{"id":15642,"date":"2024-12-30T17:12:42","date_gmt":"2024-12-30T16:12:42","guid":{"rendered":"https:\/\/cms.zdv.uni-mainz.de\/fb08-physics\/astroteilchen-neutrinophysik\/"},"modified":"2026-04-10T14:49:06","modified_gmt":"2026-04-10T12:49:06","slug":"astroteilchen-neutrinophysik","status":"publish","type":"page","link":"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/astroteilchen-neutrinophysik\/","title":{"rendered":"Astro-, Astroteilchen- &amp; Neutrinophysik"},"content":{"rendered":"<jgu-base-pageheader react-props=\"{\n    &quot;items&quot;: [\n        {\n            &quot;box&quot;: {\n                &quot;index&quot;: &quot;Das erstaunliche Gebiet der&quot;,\n                &quot;title&quot;: &quot;Astro-, Astroteilchen- &amp;amp; Neutrinophysik&quot;,\n                &quot;link&quot;: {\n                    &quot;url&quot;: &quot;&quot;,\n                    &quot;title&quot;: &quot;Mehr erfahren&quot;\n                }\n            },\n            &quot;color&quot;: &quot;default&quot;,\n            &quot;image&quot;: {\n                &quot;url&quot;: &quot;&quot;\n            },\n            &quot;imgCredit&quot;: &quot;&quot;,\n            &quot;useVideo&quot;: false,\n            &quot;video&quot;: false\n        }\n    ],\n    &quot;type&quot;: &quot;border&quot;,\n    &quot;align&quot;: &quot;full&quot;,\n    &quot;quicklinks&quot;: {\n        &quot;show&quot;: false,\n        &quot;selects&quot;: []\n    },\n    &quot;useBreadcrumb&quot;: false\n}\">\n<\/jgu-base-pageheader>\n\n\n<p class=\"has-big-font-size\"><a href=\"https:\/\/www.uni-mainz.de\/\">Johannes Gutenberg-Universit\u00e4t Mainz<\/a> &gt; <a href=\"https:\/\/www.phmi.uni-mainz.de\/\">Fachbereich 08<\/a> &gt; <a href=\"https:\/\/physics.uni-mainz.de\/de\/\">Physik<\/a> &gt; <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/\">Physikforschung<\/a> &gt; <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/\">Forschungsfelder<\/a> &gt; Astro-, Astroteilchen- &amp; Neutrinophysik<\/p>\n\n\n\n<div style=\"height:90px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n<jgu-base-anchornavigation react-props=\"{\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;theme&quot;: &quot;white&quot;\n}\">\n    \n<\/jgu-base-anchornavigation>\n\n<div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"neutrinophysik\"\n\tdata-label=\"Neutrinophysik\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;white&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-white \"><div class=\"content padding-medium\">\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Neutrinophysik&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics.jpg&quot;,\n        &quot;id&quot;: 13186,\n        &quot;hideImageDescription&quot;: true,\n        &quot;alt&quot;: &quot;Visual: Neutrino Physics&quot;,\n        &quot;caption&quot;: &quot;Visual: Neutrino Physics&quot;,\n        &quot;credit&quot;: &quot;\\u00a9 adobe.stock.com&quot;,\n        &quot;description&quot;: &quot;Visual: Neutrino Physics&quot;,\n        &quot;title&quot;: &quot;Visual: Neutrino Physics&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/neutrino-physics-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<div style=\"height:54px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n\n<p class=\"has-big-font-size\">Neutrinos sind die Au\u00dfenseiter des Standardmodells. Da sie nur schwach mit den anderen Teilchen interagieren, sind eine Reihe von Schl\u00fcsseleigenschaften der Neutrinos noch unbekannt \u2013 einschlie\u00dflich ihrer winzigen Massen und wie diese erzeugt werden. W\u00e4hrend das Experiment Project 8 darauf abzielt, den absoluten Wert der Massen direkt zu messen, versucht man mit den Experimenten JUNO und IceCube, ihre Ordnung zu bestimmen. Eine m\u00f6gliche Erkl\u00e4rung f\u00fcr die geringe Masse der Neutrinos k\u00f6nnte sein, dass sie ihre eigenen Antiteilchen sind. Dies w\u00fcrde zu dem Ph\u00e4nomen des neutrinolosen doppelten Betazerfalls f\u00fchren, nach dem die NuDoubt++ Kollaboration sucht. Ganz allgemein k\u00f6nnten sich Neutrinos und Anti-Neutrinos unterschiedlich verhalten. Dies wird gemeinhin durch eine CP-verletzende Phase beschrieben, die beim Vergleich von Neutrino- und Anti-Neutrinostrahlen bei DUNE beobachtet werden kann. Die technologische Entwicklung f\u00fcr zuk\u00fcnftige Experimente und Querschnittsmessungen f\u00fcr Beschleuniger-Neutrinos werden am ANNIE-Experiment am Fermilab durchgef\u00fchrt.        <\/p>\n\n\n\n<p class=\"has-big-font-size\">Neutrinos bieten auch eine einzigartige M\u00f6glichkeit f\u00fcr die theoretische Forschung. Wir erforschen den Ursprung ihrer Massen, nicht-standardm\u00e4\u00dfige Neutrino-Wechselwirkungen und ihre m\u00f6gliche Rolle bei der Entstehung der Materie-Antimaterie-Asymmetrie (Gruppen der Professoren Harz und Kopp). Trotz vieler offener Fragen zu ihren Eigenschaften und ihrem Ursprung k\u00f6nnen Neutrinos als kosmische Boten dienen, die Informationen von einer Vielzahl astrophysikalischer Objekte transportieren \u2013 einschlie\u00dflich der Erde, der Sonne und entfernter kosmischer Quellen.  <\/p>\n\n\n<jgu-base-accordion react-props=\"{&quot;selected&quot;:1,&quot;hasAllOpenButton&quot;:false,&quot;align&quot;:&quot;wide&quot;,&quot;onlyOne&quot;:false,&quot;initAllClosed&quot;:true,&quot;enableSearch&quot;:false}\">\n    \n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimentelle &amp;amp; Theoretische Forschungsgruppen&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimentelle-theoretische-forschungsgruppen&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. &lt;\\\/strong&gt;Sonia Bacca&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19384,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Sonia Bacca&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sonia-Bacca-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Kernstruktur, Kernreaktion, Wenig- und Vielteilchentheorie&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/bacca-sonia\\\/\\&quot;&gt;Informationen zur Person&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/bacca-sonia\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/\\&quot;&gt;Institut f\\u00fcr Kernphysik&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119550409&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Sebastian B\\u00f6ser&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19150,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Sebastian B\\u00f6ser - neu&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Sebastian-Boeser-neu-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Experimentelle Neutrinophysik: Masse und Mischung&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/ag-boeser.physik.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Sebastian B\\u00f6ser&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/ag-boeser.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119543817&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Martin Fertl&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19401,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Martin Fertl 1&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Martin-Fertl-1-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Pr\\u00e4zisionsmessungen der fundamentalen Eigenschaften von Neutronen, Myonen und Neutrinos&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/ag-fertl.physik.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Martin Fertl&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/ag-fertl.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Quanten-, Atom- und Neutronenphysik (QUANTUM)&quot;,\n    &quot;uuid&quot;: &quot;1737119550409&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Julia Harz&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 10521,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;credit&quot;: &quot;&quot;,\n        &quot;alt&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-600x600.jpg 600w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;(Astro)Teilchenphysik und Kosmologie des fr\\u00fchen Universums: Baryogenese, dunkle Materie, Neutrinos &amp;amp; Weiterentwicklung theoretischer Methoden&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-julia-harz\\\/\\&quot;&gt;Gruppe von Julia Harz&lt;\\\/a&gt; &quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-julia-harz\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Joachim Kopp&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19158,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Joachim Kopp&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Astroteilchentheorie, Neutrinos, Quantentechnologien &quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/\\&quot;&gt;Webseite von Joachim Kopp&lt;\\\/a&gt; &quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119543817&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Livia Ludhova&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 12549,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/ludhova.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;alt&quot;: &quot;Prof. Dr. Livia Ludhova&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Livia Ludhova&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Livia Ludhova&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Livia Ludhova&quot;,\n        &quot;width&quot;: 1240,\n        &quot;height&quot;: 1240,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/ludhova.jpg 1240w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/ludhova-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/ludhova-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/ludhova-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/ludhova-768x768.jpg 768w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;JUNO, Reaktor-, Erd-, Sonnen- und atmosph\\u00e4rische Neutrinos&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;http:\\\/\\\/neutrino.gsi.de\\\/\\&quot;&gt;Gruppe von Livia Ludhova&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/neutrino.gsi.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119550409&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Dr. Stefan Schoppmann&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 20577,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/04\\\/Schoppmann-Stefan-1.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Schoppmann Stefan&quot;,\n        &quot;width&quot;: 708,\n        &quot;height&quot;: 708,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/04\\\/Schoppmann-Stefan-1.jpg 708w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/04\\\/Schoppmann-Stefan-1-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/04\\\/Schoppmann-Stefan-1-150x150.jpg 150w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Forschung und Entwicklung im Bereich Szintillatoren, Neutrinos, Dunkle Materie&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.yq5.de\\\/science\\\/\\&quot;&gt;Informationen zur Person&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.yq5.de\\\/science\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Alfons Weber&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19164,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;weber&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/weber-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Experimentelle Neutrinophysik: Oszillationen und Wirkungsquerschnitte, Detektor-F&amp;amp;E&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/profile-page-alfons-weber\\\/\\&quot;&gt;Informationen zur Person&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/profile-page-alfons-weber\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Michael Wurm&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19176,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Michael Wurm&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Michael-Wurm-1-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Experimentelle Neutrinophysik, Neutrinomassenordnung, Supernova-Neutrinos&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/prof-michael-wurm\\\/\\&quot;&gt;Gruppe von Michael Wurm&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/prof-michael-wurm\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n<\/jgu-base-accordionitem>\n\n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimente&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimente&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n<jgu-base-tabs react-props=\"{\n    &quot;layout&quot;: {\n        &quot;type&quot;: &quot;flex&quot;,\n        &quot;flexWrap&quot;: &quot;nowrap&quot;,\n        &quot;justifyContent&quot;: &quot;left&quot;,\n        &quot;orientation&quot;: &quot;vertical&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;selected&quot;: 1,\n    &quot;ratio&quot;: 0,\n    &quot;autoRatio&quot;: true,\n    &quot;stackMobile&quot;: false,\n    &quot;hasAllOpenButton&quot;: true,\n    &quot;onlyOne&quot;: false,\n    &quot;initAllClosed&quot;: true,\n    &quot;enableSearch&quot;: false\n}\">\n    \n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;ANNIE&quot;,\n    &quot;slug&quot;: &quot;annie&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;ANNIE&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Entdeckung von Neutrino-Wechselwirkungen&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square.jpg&quot;,\n        &quot;id&quot;: 15292,\n        &quot;alt&quot;: &quot;ANNIE Experiment&quot;,\n        &quot;caption&quot;: &quot;ANNIE Experiment&quot;,\n        &quot;credit&quot;: &quot;\\u00a9 ANNIE collaboration&quot;,\n        &quot;description&quot;: &quot;ANNIE Experiment&quot;,\n        &quot;title&quot;: &quot;ANNIE Experiment&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/annie-square-2048x2048.jpg 2048w&quot;\n    },\n    &quot;caption&quot;: &quot;ANNIE&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">ANNIE ist ein mit Gadolinium dotierter Wasser-Tscherenkov-Detektor, der Messungen im Booster Neutrino Beam (BNB) am Fermilab in Batavia (Illinois) in den Vereinigten Staaten durchf\u00fchrt. Das Hauptziel ist die Bestimmung der Neutronenmultiplikation, die durch Myon-Neutrino-Wechselwirkungen in Wasser erzeugt wird, als eine Funktion des Impuls-Transfers: Die Ergebnisse werden sich auf die Rekonstruktion von Neutrino-Wechselwirkungen in Oszillationsexperimenten mit langer Basislinie auswirken, aber auch auf die Suche nach dem Protonenzerfall und dem diffusen Supernova-Neutrino-Hintergrund in zuk\u00fcnftigen gro\u00df angelegten Detektoren.  <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/research-groups\\\/ex-annie\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;DUNE&quot;,\n    &quot;slug&quot;: &quot;dune&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;DUNE&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Den Neutrinostrahl verstehen&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune.jpg&quot;,\n        &quot;id&quot;: 10500,\n        &quot;alt&quot;: &quot;Dune Experiment&quot;,\n        &quot;caption&quot;: &quot;Dune Experiment&quot;,\n        &quot;credit&quot;: &quot; \\u00a9 JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Dune Experiment&quot;,\n        &quot;title&quot;: &quot;Dune Experiment&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/dune-600x600.jpg 600w&quot;\n    },\n    &quot;caption&quot;: &quot;DUNE&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Die Mainzer Gruppe leistet einen Beitrag zu den Nahdetektoren des DUNE-Komplexes, die f\u00fcr das Verst\u00e4ndnis der Eigenschaften des Neutrinostrahls und der Wechselwirkung von Neutrinos mit Argon unerl\u00e4sslich sind. Der Prozess, bei dem ein Neutrino oder Anti-Neutrino mit Materie wechselwirkt, kann dadurch beschrieben werden, dass das Neutrino ein W- oder Z-Boson mit einem Neutron oder Proton innerhalb des Argonkerns austauscht. Um diesen Prozess zu verstehen, ist es nicht nur wichtig, die Energie-\/Impulsverteilung der Argon-Nukleonen zu kennen, sondern auch zu wissen, wie die im Kern erzeugten Teilchen beim Durchqueren des Kernmediums des Argon-Kerns interagieren.  <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/ex-dune\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;IceCube&quot;,\n    &quot;slug&quot;: &quot;icecube&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;IceCube&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Mit Neutrinos das Universum erforschen&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube.jpg&quot;,\n        &quot;id&quot;: 10503,\n        &quot;alt&quot;: &quot;IceCube - Neutrino-Observatorium am S\\u00fcdpol&quot;,\n        &quot;caption&quot;: &quot;IceCube - Neutrino-Observatorium am S\\u00fcdpol&quot;,\n        &quot;credit&quot;: &quot; \\u00a9 JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;IceCube - Neutrino-Observatorium am S\\u00fcdpol&quot;,\n        &quot;title&quot;: &quot;IceCube - Neutrino-Observatorium am S\\u00fcdpol&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/icevube-600x600.jpg 600w&quot;\n    },\n    &quot;caption&quot;: &quot;IceCube&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Der IceCube-Detektor ist ein Kubikkilometer gro\u00dfes Neutrinoteleskop, das im Gletschereis am geografischen S\u00fcdpol aufgestellt wurde. Seine enorme Gr\u00f6\u00dfe erm\u00f6glicht es, die sehr seltenen Wechselwirkungen astrophysikalischer Neutrinos zu untersuchen &#8211; einzigartige Sonden aus den Tiefen des Universums, die helfen k\u00f6nnen, die schwer fassbaren Quellen der kosmischen Strahlung zu identifizieren. Gleichzeitig k\u00f6nnen die Eigenschaften der Neutrinos selbst anhand der F\u00fclle der beobachteten atmosph\u00e4rischen Neutrinos und ihrer Schwingungen auf ihrem Weg durch die Erde untersucht werden.  <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/research-groups\\\/ex-icecube\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;JUNO&quot;,\n    &quot;slug&quot;: &quot;juno&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;JUNO&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Ordnung der Neutrinomasse&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/juno.jpg&quot;,\n        &quot;id&quot;: 12537,\n        &quot;alt&quot;: &quot;Juno Experiment&quot;,\n        &quot;caption&quot;: &quot;Juno Experiment&quot;,\n        &quot;credit&quot;: &quot;@ JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Juno Experiment&quot;,\n        &quot;title&quot;: &quot;Juno Experiment&quot;,\n        &quot;width&quot;: 1240,\n        &quot;height&quot;: 1240,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/juno.jpg 1240w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/juno-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/juno-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/juno-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/juno-768x768.jpg 768w&quot;\n    },\n    &quot;caption&quot;: &quot;JUNO&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Das Jiangmen Underground Neutrino Observatory (JUNO) ist ein hochmodernes Neutrinoexperiment in China, mit dem die Neutrinomassenhierarchie mit noch nie dagewesener Pr\u00e4zision bestimmt werden soll. Sein Hauptziel ist es, die Ordnung der Neutrinomassen zu kl\u00e4ren, eine grundlegende Frage der Teilchenphysik. Das Besondere an JUNO ist sein massiver 20.000-Tonnen-Fl\u00fcssigszintillator-Detektor, der eine au\u00dfergew\u00f6hnliche Energieaufl\u00f6sung und Empfindlichkeit bietet. Neben den Reaktorneutrinos wird JUNO auch Sonnen-, Atmosph\u00e4ren-, Supernovaausbruchsneutrinos, Geoneutrinos und den diffusen Supernova-Neutrino-Hintergrund (DSNB) untersuchen und bietet damit ein breit gef\u00e4chertes Wissenschaftsprogramm. Dank seiner Gr\u00f6\u00dfe und Vielseitigkeit wird JUNO eine Schl\u00fcsselrolle bei der Verbesserung unseres Verst\u00e4ndnisses der Neutrino-Eigenschaften und astrophysikalischer Prozesse spielen.    <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/research-groups\\\/ex-juno\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;NuDoubt\\u207a\\u207a&quot;,\n    &quot;slug&quot;: &quot;nudoubt&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;NuDoubt\\u207a\\u207a&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Identifizierung des Ursprungs der Neutrinomasse&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<p class=\"has-big-font-size\">Die Dominanz der gew\u00f6hnlichen Materie gegen\u00fcber der Antimaterie im beobachtbaren Universum ist eines der gr\u00f6\u00dften ungel\u00f6sten R\u00e4tsel der Kosmologie. Ohne diese Asymmetrie w\u00e4re das Universum v\u00f6llig leer. Eine m\u00f6gliche Erkl\u00e4rung ist der neutrinolose Doppelbetazerfall, der beweist, dass Materie und Antimaterie in bestimmten Situationen identisch sind. Das NuDoubt\u207a\u207a-Experiment zielt auf die Messung von Zwei-Neutrino und neutrinolosen positiven doppelten Betazerf\u00e4llen (2\u03b2\u207a\/EC\u03b2\u207a). Es basiert auf einem neuen Detektorkonzept, das hybride und opake Szintillatoren mit einer neuartigen Lichtauslesetechnik kombiniert. Die Technologie ist besonders geeignet, um Positronensignaturen (\u03b2\u207a) zu erkennen. In der ersten Phase wird NuDoubt\u207a\u207a mit angereichertem Kr-78 Gas unter Hochdruckbeladung arbeiten. Es erwartet die Entdeckung von Zwei-Neutrino positiven doppelten Betazerfallsmodi von Kr-78 innerhalb von einer Tonnen-Woche Exposition und ist in der Lage, neutrinolose positive doppelte Betazerfallsmodi mit einer um mehrere Gr\u00f6\u00dfenordnungen verbesserten Signifikanz im Vergleich zu den derzeitigen experimentellen Grenzen zu untersuchen.       <\/p>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/NuDoubt3Dmodel.png&quot;,\n        &quot;id&quot;: 12536,\n        &quot;alt&quot;: &quot;NuDoubt 3d model&quot;,\n        &quot;caption&quot;: &quot;NuDoubt 3d model&quot;,\n        &quot;credit&quot;: &quot;@ JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;NuDoubt 3d model&quot;,\n        &quot;title&quot;: &quot;NuDoubt 3d model&quot;,\n        &quot;width&quot;: 548,\n        &quot;height&quot;: 365,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/NuDoubt3Dmodel.png 548w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/NuDoubt3Dmodel-300x200.png 300w&quot;\n    },\n    &quot;caption&quot;: &quot;NuDoubt\\u207a\\u207a&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image>\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/nudoubt.uni-mainz.de\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button>\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;PROJECT 8&quot;,\n    &quot;slug&quot;: &quot;project-8&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;Project 8&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Messung der Neutrinomasse&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/project8.jpg&quot;,\n        &quot;id&quot;: 12539,\n        &quot;alt&quot;: &quot;Project 8 Experiment&quot;,\n        &quot;caption&quot;: &quot;Project 8 Experiment&quot;,\n        &quot;credit&quot;: &quot;@ JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Project 8 Experiment&quot;,\n        &quot;title&quot;: &quot;Project 8 Experiment&quot;,\n        &quot;width&quot;: 1240,\n        &quot;height&quot;: 1240,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/project8.jpg 1240w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/project8-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/project8-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/project8-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/project8-768x768.jpg 768w&quot;\n    },\n    &quot;caption&quot;: &quot;Project 8&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">W\u00e4hrend man lange Zeit dachte, dass Neutrinos masselos sind, ist ihre Oszillation ein klarer Beweis daf\u00fcr, dass sie es nicht sind. Die exakteste Methode zur Bestimmung dieser winzigen Massen im Labor ist die Beobachtung des Endpunkts des \u03b2-Zerfallspektrums von Tritium. Die neuartige CRES-Methode zur Bestimmung der \u03b2-Energie durch die schwache Radioemission wird die Energieaufl\u00f6sung durch eine genauere Messung der Elektronenbewegung verbessern, aber auch dadurch, dass sie die Verwendung von Tritiumatomen anstelle von Molek\u00fclen erm\u00f6glicht. Die Erzeugung dieser Atome stellt eine gro\u00dfe technologische Herausforderung dar, da die Atome auf \u00fcber 2300K erhitzt werden m\u00fcssen, um sie zu dissoziieren, aber in der Falle nur Milli-Kelvin-Temperaturen haben k\u00f6nnen. Eine weitere Herausforderung stellen die Magnetfelder dar, die einen genau kontrollierten homogenen Bereich, in dem die Elektronenenergie gemessen wird, und steile W\u00e4nde ben\u00f6tigen, um sowohl Elektronen als auch Atome einzufangen.     <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/project8.physik.uni-mainz.de&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;T2K&quot;,\n    &quot;slug&quot;: &quot;t2k&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;index&quot;: &quot;T2K&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Erforschung der Neutrino-Oszillation&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<p class=\"has-big-font-size\">T2K ist ein Neutrino-Oszillationsexperiment der zweiten Generation. Es verwendet einen au\u00dferaxialen Neutrinostrahl, der im J-PARC Beschleunigerkomplex in Tokai an der Ostk\u00fcste Japans erzeugt wird. Der Beschleunigerkomplex wird schlie\u00dflich den weltweit intensivsten Neutrinostrahl mit langer Basislinie erzeugen, indem Protonen mit einer Strahlleistung von etwa 500 kW auf ein Kohlenstofftarget geschossen werden. Die entstehenden Neutrinos werden zun\u00e4chst in einem nahe gelegenen Detektorkomplex gemessen, bevor sie 295 km weiter zum Super-Kamiokande-Detektor gelangen.   <\/p>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:50%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/nd280-ug.png&quot;,\n        &quot;id&quot;: 17292,\n        &quot;alt&quot;: &quot;Experiment T2K&quot;,\n        &quot;caption&quot;: &quot;Experiment T2K&quot;,\n        &quot;credit&quot;: &quot;\\u00a9 JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Experiment T2K&quot;,\n        &quot;title&quot;: &quot;Experiment T2K&quot;,\n        &quot;width&quot;: 338,\n        &quot;height&quot;: 149,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/nd280-ug.png 338w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/08\\\/nd280-ug-300x132.png 300w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:50%\"><jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/ex-t2k\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<\/jgu-base-tabs>\n\n<\/jgu-base-accordionitem>\n\n<\/jgu-base-accordion>\n<\/div>\n<\/div>\n<\/div><\/div>\n<\/jgu-base-section>\n\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;light&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-light \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"fruhes-universum\"\n\tdata-label=\"Fr\u00fches Universum\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\"><jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Fr\\u00fches Universum&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<p class=\"has-big-font-size\">Das fr\u00fche Universum, vom Urknall bis zur Entstehung von Galaxien und Sternen, ist der Schl\u00fcssel zu mehreren ungel\u00f6sten fundamentalen Fragen der Physik. Dazu geh\u00f6ren die Dynamik der Ausdehnung, der Ursprung der Asymmetrie zwischen Materie und Antimaterie sowie die Natur und die Entstehung der dunklen Materie. Einblicke in diese Epoche gew\u00e4hren Beobachtungen des kosmischen Mikrowellenhintergrunds, gro\u00dfr\u00e4umiger Strukturen und zunehmend auch die Suche nach Gravitationswellen.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Unsere Forschung befasst sich mit diesen tiefgreifenden Fragen durch eine Vielzahl von Ans\u00e4tzen. Wir untersuchen Mechanismen wie die Baryogenese und die Leptogenese, um den Ursprung der Asymmetrie zwischen Materie und Antimaterie zu erkl\u00e4ren. Wir untersuchen Phasen\u00fcberg\u00e4nge und die Dynamik des dunklen Sektors, die zu Gravitationswellen und anderen Beobachtungen des fr\u00fchen Universums f\u00fchren. Wir untersuchen auch die inflation\u00e4re Dynamik, gefolgt von der Aufw\u00e4rmung des Universums, erforschen Kandidaten f\u00fcr dunkle Materie und entwickeln die theoretischen Grundlagen der Kosmologie des fr\u00fchen Universums mit Hilfe der Quantenfeldtheorie in gekr\u00fcmmter Raumzeit und der Nicht-Gleichgewichts-Quantenfeldtheorie weiter. Dabei stellen wir enge Verbindungen zwischen der Hochenergiephysik und kosmologischen Beobachtungen her.     Auf der experimentellen Seite wird das GravNET-Experiment nach Gravitationswellen bei GigaHertz-Frequenzen suchen, mit dem Ziel, das fr\u00fche Universum kurz nach dem Ende der Inflation und der Wiedererw\u00e4rmung zu untersuchen. Erg\u00e4nzende Untersuchungen zur Physik des fr\u00fchen Universums werden in der Hochenergie-Teilchenphysik durchgef\u00fchrt, insbesondere die Erforschung der <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/hochenergie-teilchenphysik\/#die-physik-des-higgs-sektors\">Higgs-Physik<\/a> im Zusammenhang mit dem elektroschwachen Phasen\u00fcbergang und der <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/hochenergie-teilchenphysik\/#quark-und-lepton-flavour-physik\">Quark- und Leptonenflavour-Physik<\/a> als Schl\u00fcsselelement der Baryogenese.<\/p>\n\n\n\n<p class=\"has-big-font-size\">&nbsp;<\/p>\n\n\n<jgu-base-accordion react-props=\"{&quot;selected&quot;:1,&quot;hasAllOpenButton&quot;:false,&quot;align&quot;:&quot;wide&quot;,&quot;onlyOne&quot;:false,&quot;initAllClosed&quot;:true,&quot;enableSearch&quot;:false}\">\n    \n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimentelle &amp;amp; Theoretische Forschungsgruppen&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimentelle-theoretische-forschungsgruppen-1&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.34%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. &lt;\\\/strong&gt;Dmitry Budker&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 13545,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;credit&quot;: &quot;&quot;,\n        &quot;alt&quot;: &quot;Prof. Dr. Dmitry Budker&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Dmitry Budker&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Dmitry Budker&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Dmitry Budker&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/budker-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Grundlegende Symmetrien, magnetische Resonanz, Sensorik&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/budker.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Dmitry Budker&lt;\\\/a&gt; &quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/budker.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Quanten-, Atom- und Neutronenphysik (QUANTUM)&quot;,\n    &quot;uuid&quot;: &quot;1737119543817&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.34%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Julia Harz&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 10521,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;credit&quot;: &quot;&quot;,\n        &quot;alt&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-600x600.jpg 600w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;(Astro)Teilchenphysik und Kosmologie des fr\\u00fchen Universums: Baryogenese, dunkle Materie, Neutrinos &amp;amp; Weiterentwicklung theoretischer Methoden&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-julia-harz\\\/\\&quot;&gt;Gruppe von Julia Harz&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-julia-harz\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Joachim Kopp&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19158,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Joachim Kopp&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Astroteilchentheorie, Neutrinos, Quantentechnologien &quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/\\&quot;&gt;Webseite von Joachim Kopp&lt;\\\/a&gt; &quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119543817&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Pedro Schwaller&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19186,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Pedro Schwaller&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Physik jenseits des Standardmodells, Kosmologie des fr\\u00fchen Universums, Gravitationswellen&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-pedro-schwaller\\\/\\&quot;&gt;Gruppe von Pedro Schwaller&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-pedro-schwaller\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119697836&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Dr. Carlos Tamarit&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 10530,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;alt&quot;: &quot;Dr. Carlos Tamarit&quot;,\n        &quot;caption&quot;: &quot;Dr. Carlos Tamarit&quot;,\n        &quot;description&quot;: &quot;Dr. Carlos Tamarit&quot;,\n        &quot;title&quot;: &quot;Dr. Carlos Tamarit&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/tamarit-600x600.jpg 600w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Effekte au\\u00dferhalb des Gleichgewichts und bei endlicher Temperatur, Phasen\\u00fcberg\\u00e4nge, Quantenfeldtheorie&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-carlos-tamarit\\\/\\&quot;&gt;Gruppe von Carlos Tamarit&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1770309414562&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-carlos-tamarit\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119703835&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><\/div>\n<\/div>\n\n\n<\/jgu-base-accordionitem>\n\n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experiment&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experiment&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n<jgu-base-tabs react-props=\"{\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;selected&quot;: 1,\n    &quot;ratio&quot;: 0,\n    &quot;autoRatio&quot;: true,\n    &quot;stackMobile&quot;: false,\n    &quot;hasAllOpenButton&quot;: true,\n    &quot;onlyOne&quot;: false,\n    &quot;initAllClosed&quot;: true,\n    &quot;enableSearch&quot;: false,\n    &quot;layout&quot;: {\n        &quot;type&quot;: &quot;flex&quot;,\n        &quot;flexWrap&quot;: &quot;nowrap&quot;,\n        &quot;justifyContent&quot;: &quot;space-between&quot;,\n        &quot;orientation&quot;: &quot;horizontal&quot;\n    }\n}\">\n    \n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;GravNet&quot;,\n    &quot;slug&quot;: &quot;gravnet&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet.jpg&quot;,\n        &quot;id&quot;: 13201,\n        &quot;alt&quot;: &quot;Visual: Gravnet&quot;,\n        &quot;caption&quot;: &quot;Visual: Gravnet&quot;,\n        &quot;credit&quot;: &quot;\\u00a9 www.freepik.com&quot;,\n        &quot;description&quot;: &quot;Visual: Gravnet&quot;,\n        &quot;title&quot;: &quot;Visual: Gravnet&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/gravnet-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Das GravNet-Projekt (&#8222;A Global Network for the Search for High Frequency Gravitational Waves&#8220;) schl\u00e4gt eine Br\u00fccke zwischen der Teilchenphysik und der Gravitationswellenphysik. Es zielt darauf ab, ein globales Netzwerk von Detektoren zu errichten, das auf die Suche nach hochfrequenten Gravitationswellen ausgerichtet ist. Dieses Detektornetzwerk k\u00f6nnte dazu beitragen, eine der gr\u00f6\u00dften ungel\u00f6sten Fragen der modernen Physik zu beantworten: die Natur der dunklen Materie. <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/budker.uni-mainz.de\\\/?p=2533&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<\/jgu-base-tabs>\n\n<\/jgu-base-accordionitem>\n\n<\/jgu-base-accordion>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black.jpg&quot;,\n        &quot;id&quot;: 13527,\n        &quot;hideImageDescription&quot;: true,\n        &quot;alt&quot;: &quot;Planck Skymap black&quot;,\n        &quot;caption&quot;: &quot;Planck Skymap black&quot;,\n        &quot;credit&quot;: &quot;@ ESA and the Planck Collaboration&quot;,\n        &quot;description&quot;: &quot;Planck Skymap black&quot;,\n        &quot;title&quot;: &quot;Planck Skymap black&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/skymap-black-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n<\/div>\n<\/div><\/div>\n<\/jgu-base-section>\n\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;white&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-white \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"dunkle-materie\"\n\tdata-label=\"Dunkle Materie\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Dunkle Materie&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter.jpg&quot;,\n        &quot;id&quot;: 13204,\n        &quot;hideImageDescription&quot;: true,\n        &quot;alt&quot;: &quot;Visual: Dark Matter&quot;,\n        &quot;caption&quot;: &quot;Visual: Dark Matter&quot;,\n        &quot;credit&quot;: &quot;\\u00a9 adobe.stock.com&quot;,\n        &quot;description&quot;: &quot;Visual: Dark Matter&quot;,\n        &quot;title&quot;: &quot;Visual: Dark Matter&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/drak-matter-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<div style=\"height:51px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n\n<p class=\"has-big-font-size\">Astrophysikalische Beobachtungen liefern \u00fcberw\u00e4ltigende Beweise f\u00fcr die Existenz einer zus\u00e4tzlichen nicht leuchtenden Materiekomponente in unserem Universum, die gemeinhin als dunkle Materie bezeichnet wird. \u00dcber ihre Eigenschaften ist jedoch nur wenig bekannt. Tats\u00e4chlich ist ihre Masse praktisch unbegrenzt und reicht von ultraleichten Skalarfeldern mit Massen, die viel leichter sind als die der Neutrinos, bis hin zu primordialen schwarzen L\u00f6chern mit einem Vielfachen der Sonnenmasse. Die Bestimmung der Natur der dunklen Materie ist daher eine der wichtigsten offenen Fragen der Astroteilchenphysik.   <\/p>\n\n\n\n<p class=\"has-big-font-size\">In Mainz suchen die Experimente CASPEr und GNOME mit hochempfindlichen Spinpr\u00e4zessionsger\u00e4ten und optischen Magnetometern (<a href=\"https:\/\/budker.uni-mainz.de\/\">Gruppe von Dmitry Budker<\/a>) nach ultraleichter dunkler Materie. Das XENON-Experiment sucht nach Kollisionen von Dunkle-Materie-Teilchen im GeV- bis TeV-Bereich mit Xenon-Atomen in einem hoch abgeschirmten unterirdischen Experiment. Das COSI Compton-Teleskop, ein Satellit, der 2027 gestartet werden soll, wird nach Gammastrahlenemission von dunkler Materie im MeV-Bereich suchen. Die Mainzer Theoriegruppen entwickeln und analysieren neue Modelle der dunklen Materie, verbessern die Methoden zur theoretischen Vorhersage der H\u00e4ufigkeit dunkler Materie und ihrer Wechselwirkungen und entwerfen neue Strategien zur Suche nach dunkler Materie. <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/hochenergie-teilchenphysik\/\">Erg\u00e4nzt werden diese Bem\u00fchungen durch die Suche nach Teilchen der dunklen Materie oder ihren Vermittlern am MESA-Beschleuniger in Mainz und im Rahmen der ATLAS-Kollaboration.<\/a>    <\/p>\n\n\n<jgu-base-accordion react-props=\"{&quot;selected&quot;:1,&quot;hasAllOpenButton&quot;:false,&quot;align&quot;:&quot;wide&quot;,&quot;onlyOne&quot;:false,&quot;initAllClosed&quot;:true,&quot;enableSearch&quot;:false}\">\n    \n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimentelle &amp;amp; Theoretische Forschungsgruppen&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimentelle-theoretische-forschungsgruppen-2&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Julia Harz&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 10521,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;credit&quot;: &quot;&quot;,\n        &quot;alt&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Julia Harz&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/harz-600x600.jpg 600w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;(Astro)Teilchenphysik und Kosmologie des fr\\u00fchen Universums: Baryogenese, dunkle Materie, Neutrinos &amp;amp; Weiterentwicklung theoretischer Methoden&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-julia-harz\\\/\\&quot;&gt;Gruppe von Julia Harz &lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-julia-harz\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119556643&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Joachim Kopp&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19158,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Joachim Kopp&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Joachim-Kopp-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Astroteilchentheorie, Neutrinos, Quantentechnologien&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/\\&quot;&gt;Webseite von Joachim Kopp  &lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&lt;br&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119543817&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Uwe Oberlack&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19191,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Uwe Oberlack&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Experimentelle Astroteilchenphysik: Dunkle Materie, Gammastrahlenastronomie &quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\&quot;&gt;Gruppe von Uwe Oberlack&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/xenon.physik.uni-mainz.de&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119697836&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Pedro Schwaller&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19186,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Pedro Schwaller&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Pedro-Schwaller-1-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Theoretische Teilchenphysik, Physik jenseits des Standardmodells, Kosmologie des fr\\u00fchen Universums, Gravitationswellen&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-pedro-schwaller\\\/\\&quot;&gt;Gruppe von Pedro Schwaller&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-pedro-schwaller\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119697836&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Dr. Felix Yu&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19197,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Felix Yu&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Felix-Yu-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Collider-Ph\\u00e4nomenologie, Higgs-Physik, dunkle Materie, Axion-Physik, nicht-perturbative Physik&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-felix-yu\\\/\\&quot;&gt;Gruppe von Felix Yu&lt;\\\/a&gt; &quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-felix-yu\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;Theoretische Hochenergiephysik (THEP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119703835&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><\/div>\n<\/div>\n\n\n<\/jgu-base-accordionitem>\n\n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimente&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimente-2&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n<jgu-base-tabs react-props=\"{\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;selected&quot;: 1,\n    &quot;ratio&quot;: 0,\n    &quot;autoRatio&quot;: true,\n    &quot;stackMobile&quot;: false,\n    &quot;hasAllOpenButton&quot;: true,\n    &quot;onlyOne&quot;: false,\n    &quot;initAllClosed&quot;: true,\n    &quot;enableSearch&quot;: false,\n    &quot;layout&quot;: {\n        &quot;type&quot;: &quot;flex&quot;,\n        &quot;flexWrap&quot;: &quot;nowrap&quot;,\n        &quot;justifyContent&quot;: &quot;space-between&quot;,\n        &quot;orientation&quot;: &quot;horizontal&quot;\n    }\n}\">\n    \n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;COSI&quot;,\n    &quot;slug&quot;: &quot;cosi&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi.jpg&quot;,\n        &quot;id&quot;: 13213,\n        &quot;alt&quot;: &quot;COSI Experiment&quot;,\n        &quot;caption&quot;: &quot;COSI Experiment&quot;,\n        &quot;credit&quot;: &quot;@ JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;COSI Experiment&quot;,\n        &quot;title&quot;: &quot;COSI Experiment&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">COSI ist ein weltraumgest\u00fctztes Gammastrahlen-Observatorium, das die Geheimnisse von Sternexplosionen aufdecken soll, indem es radioaktive Isotope aufsp\u00fcrt, die in Supernovae geschmiedet wurden. Durch die Kartierung der Gammastrahlenemissionen von Isotopen wie Aluminium-26 und Eisen-60 wird COSI die chemische Entwicklung der Milchstra\u00dfe nachzeichnen und aufzeigen, wo schwere Elemente entstehen. Es wird auch nach Gammastrahlen von Titan-44 suchen, einer Schl\u00fcsselsignatur von jungen Supernova-\u00dcberresten, die Aufschluss dar\u00fcber geben, wie massereiche Sterne ihr Leben beenden. COSI wird die 511 keV-Linie untersuchen, die ausgesendet wird, wenn Positronen mit Elektronen vernichtet werden, und so dazu beitragen, die Quellen von Antimaterie in unserer Galaxie zu identifizieren. Mit seinem empfindlichen Compton-Teleskop wird COSI den MeV-Gammastrahlenhimmel erforschen &#8211; eine weitgehend unerforschte Region, die ein neues Fenster zu Ph\u00e4nomenen wie Schwarzen L\u00f6chern, Neutronensternen und Gammastrahlenausbr\u00fcchen \u00f6ffnet.    <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\\/de\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;XENON&quot;,\n    &quot;slug&quot;: &quot;xenon&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon.jpg&quot;,\n        &quot;id&quot;: 13212,\n        &quot;alt&quot;: &quot;Xenon Experiment&quot;,\n        &quot;caption&quot;: &quot;Xenon Experiment&quot;,\n        &quot;credit&quot;: &quot;@ JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Xenon Experiment&quot;,\n        &quot;title&quot;: &quot;Xenon Experiment&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/xenon-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">XENON ist ein tief unter der Erde liegendes Experiment, das Teilchen der dunklen Materie aufsp\u00fcren soll, indem es ihre seltenen Wechselwirkungen mit fl\u00fcssigen Xenon-Atomen aufzeichnet. XENON ist unter dem italienischen Berg Gran Sasso gelegen und verwendet eine Zweiphasen-Zeitprojektionskammer, um nach schwach wechselwirkenden massereichen Teilchen (WIMPs) zu suchen, einem der wichtigsten Kandidaten f\u00fcr dunkle Materie. Der Detektor sucht nach winzigen Lichtblitzen und Elektronen, die entstehen, wenn ein WIMP mit einem Xenon-Kern kollidiert &#8211; Signale, die auf das Vorhandensein dunkler Materie hinweisen k\u00f6nnten. Die Oberlack-Gruppe in Mainz tr\u00e4gt zu XENON bei, indem sie fortschrittliche Datenanalysetechniken und Pr\u00e4zisionskalibrierungswerkzeuge entwickelt, die dabei helfen, potenzielle Signale der dunklen Materie von Hintergrundrauschen zu unterscheiden. Diese Bem\u00fchungen werden eine entscheidende Rolle im kommenden XLCD-Programm spielen, das darauf abzielt, sowohl die dunkle Materie als auch die Neutrinophysik mit noch gr\u00f6\u00dferer Empfindlichkeit zu untersuchen.    <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\\/de\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<\/jgu-base-tabs>\n\n<\/jgu-base-accordionitem>\n\n<\/jgu-base-accordion>\n<\/div>\n<\/div>\n<\/div><\/div>\n<\/jgu-base-section>\n\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;light&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-light \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"stellar-galaktische-physik\"\n\tdata-label=\"Sterne &amp;amp; Galaxien\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\"><jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Sterne &amp;amp; Galaxien&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<p class=\"has-big-font-size\">Wie entstehen die Elemente in den Sternen und was geschieht mit der Materie unter den extremsten Bedingungen im Universum? Wie werden die Elemente in unserer Milchstra\u00dfe geschmiedet? Was geschieht bei einer Supernova-Explosion? Unsere Forschung geht diesen Fragen mit Experimenten am Himmel und im Labor auf den Grund. Unsere Studien zur stellaren Nukleosynthese und zur Struktur von Neutronensternen kombinieren modernste Experimente mit theoretischer Modellierung. Am Hochintensit\u00e4tsbeschleuniger MESA untersuchen wir Kernreaktionen, die f\u00fcr das Verst\u00e4ndnis der Entstehung von Elementen in Sternen unerl\u00e4sslich sind. Gleichzeitig erforschen wir die Eigenschaften neutronenreicher Materie, um das Verhalten von Materie unter extremen Dichten und die Physik, die Neutronensterne formt, besser zu verstehen. Der Compton Spectrometer and Imager (COSI) ist eine Satellitenmission zur Erforschung der Sternenphysik, insbesondere der Gammastrahlenemissionen von radioaktiven Isotopen, die in Supernovae entstehen, und des Ursprungs von Positronen in unserer Galaxie.       <\/p>\n\n\n<jgu-base-accordion react-props=\"{&quot;selected&quot;:1,&quot;hasAllOpenButton&quot;:false,&quot;align&quot;:&quot;wide&quot;,&quot;onlyOne&quot;:false,&quot;initAllClosed&quot;:true,&quot;enableSearch&quot;:false}\">\n    \n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimentelle und theoretische Forschungsgruppen&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimental-amp-theoretical-research-groups-1&quot;,&quot;customSlug&quot;:true,&quot;align&quot;:&quot;wide&quot;}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Pierre Capel&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 10551,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;alt&quot;: &quot;Prof. Dr. Pierre Capel&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Pierre Capel&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Pierre Capel&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Pierre Capel&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/capel-600x600.jpg 600w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Nukleare Astrophysik, Kernreaktionstheorie, Strahlungseinfang, Coulomb-Aufl\\u00f6sung, Photo-Dissoziation&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/capel-pierre\\\/\\&quot;&gt;Informationen zur Person&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/capel-pierre\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/\\&quot;&gt;Institut f\\u00fcr Kernphysik&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1751294537916&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Uwe Oberlack&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 19191,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;title&quot;: &quot;Uwe Oberlack&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2026\\\/02\\\/Uwe-Oberlack-2048x2048.jpg 2048w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Experimentelle Astroteilchenphysik: Dunkle Materie, Gammastrahlenastronomie &quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\&quot;&gt;Gruppe von Uwe Oberlack&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/xenon.physik.uni-mainz.de&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;Experimentelle Teilchen- und Astroteilchenphysik (ETAP)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737119697836&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;&lt;strong&gt;Prof. Dr. Concettina Sfienti&lt;\\\/strong&gt;&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: 10548,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti.jpg&quot;,\n        &quot;hideImageDescription&quot;: false,\n        &quot;alt&quot;: &quot;Prof. Dr. Conecettina Sfienti&quot;,\n        &quot;caption&quot;: &quot;Prof. Dr. Conecettina Sfienti&quot;,\n        &quot;description&quot;: &quot;Prof. Dr. Conecettina Sfienti&quot;,\n        &quot;title&quot;: &quot;Prof. Dr. Conecettina Sfienti&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/sfienti-600x600.jpg 600w&quot;\n    },\n    &quot;color&quot;: &quot;blue-gray&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: []\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;lightbulb-solid&quot;,\n    &quot;title&quot;: &quot;Experimentelle nukleare Astrophysik, Zustandsgleichung der Kernmaterie, Kernreaktionen&quot;,\n    &quot;uuid&quot;: &quot;1726244894144&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/agsfienti.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Concettina Sfienti&lt;\\\/a&gt; &quot;,\n    &quot;uuid&quot;: &quot;1734087422868&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/agsfienti.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/\\&quot;&gt;Institut f\\u00fcr Kernphysik&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1751294552349&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n<\/jgu-base-accordionitem>\n\n<jgu-base-accordionitem react-props=\"{&quot;title&quot;:&quot;Experimente&quot;,&quot;init&quot;:false,&quot;slug&quot;:&quot;experimente-1&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;customSlug&quot;:false}\">\n    \n<jgu-base-tabs react-props=\"{\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;selected&quot;: 1,\n    &quot;ratio&quot;: 0,\n    &quot;autoRatio&quot;: true,\n    &quot;stackMobile&quot;: false,\n    &quot;hasAllOpenButton&quot;: true,\n    &quot;onlyOne&quot;: false,\n    &quot;initAllClosed&quot;: true,\n    &quot;enableSearch&quot;: false,\n    &quot;layout&quot;: {\n        &quot;type&quot;: &quot;flex&quot;,\n        &quot;flexWrap&quot;: &quot;nowrap&quot;,\n        &quot;justifyContent&quot;: &quot;space-between&quot;,\n        &quot;orientation&quot;: &quot;horizontal&quot;\n    }\n}\">\n    \n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;Belle II&quot;,\n    &quot;slug&quot;: &quot;belle-ii&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2.jpg&quot;,\n        &quot;id&quot;: 10566,\n        &quot;alt&quot;: &quot;Belle 2 Experiment&quot;,\n        &quot;caption&quot;: &quot;Belle 2 Experiment&quot;,\n        &quot;credit&quot;: &quot; \\u00a9 JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Belle 2 Experiment&quot;,\n        &quot;title&quot;: &quot;Belle 2 Experiment&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/belle2-600x600.jpg 600w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Der Belle II-Detektor am SuperKEKB-Beschleuniger in Tsukuba (Japan) ist ein Experiment zur Suche nach neuer Physik jenseits des Standardmodells durch die Messung seltener Zerf\u00e4lle von Elementarteilchen wie Bottom- und Charm-Quarks oder Tau-Leptonen. Belle II wird sich mit dem Problem befassen, Beweise f\u00fcr die Existenz neuer unbekannter Teilchen zu finden, die eine m\u00f6gliche Erkl\u00e4rung f\u00fcr die Vorherrschaft der Materie im Vergleich zur Antimaterie liefern und andere offene grundlegende Fragen zu unserem Verst\u00e4ndnis des Universums beantworten k\u00f6nnen. <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.blogs.uni-mainz.de\\\/fb08-nuclear-physics\\\/belle-ii-experiment\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;COSI&quot;,\n    &quot;slug&quot;: &quot;cosi-1&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi.jpg&quot;,\n        &quot;id&quot;: 13213,\n        &quot;alt&quot;: &quot;COSI Experiment&quot;,\n        &quot;caption&quot;: &quot;COSI Experiment&quot;,\n        &quot;credit&quot;: &quot;@ JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;COSI Experiment&quot;,\n        &quot;title&quot;: &quot;COSI Experiment&quot;,\n        &quot;width&quot;: 2362,\n        &quot;height&quot;: 2362,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi.jpg 2362w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/07\\\/cosi-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">COSI ist ein weltraumgest\u00fctztes Gammastrahlen-Observatorium, das die Geheimnisse von Sternexplosionen aufdecken soll, indem es radioaktive Isotope aufsp\u00fcrt, die in Supernovae geschmiedet wurden. Durch die Kartierung der Gammastrahlenemissionen von Isotopen wie Aluminium-26 und Eisen-60 wird COSI die chemische Entwicklung der Milchstra\u00dfe nachzeichnen und aufzeigen, wo schwere Elemente entstehen. Es wird auch nach Gammastrahlen von Titan-44 suchen, einer Schl\u00fcsselsignatur von jungen Supernova-\u00dcberresten, die Aufschluss dar\u00fcber geben, wie massereiche Sterne ihr Leben beenden. COSI wird die 511 keV-Linie untersuchen, die ausgesendet wird, wenn Positronen mit Elektronen vernichtet werden, und so dazu beitragen, die Quellen von Antimaterie in unserer Galaxie zu identifizieren. Mit seinem empfindlichen Compton-Teleskop wird COSI den MeV-Gammastrahlenhimmel erforschen &#8211; eine weitgehend unerforschte Region, die ein neues Fenster zu Ph\u00e4nomenen wie Schwarzen L\u00f6chern, Neutronensternen und Gammastrahlenausbr\u00fcchen \u00f6ffnet.    <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\\/de\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;MAGIX&quot;,\n    &quot;slug&quot;: &quot;magix&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix.jpg&quot;,\n        &quot;id&quot;: 11936,\n        &quot;alt&quot;: &quot;Experiment MAGIX&quot;,\n        &quot;caption&quot;: &quot;Experiment MAGIX&quot;,\n        &quot;credit&quot;: &quot; \\u00a9 JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;Experiment MAGIX&quot;,\n        &quot;title&quot;: &quot;Experiment MAGIX&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/04\\\/Magix-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Das MAGIX-Experiment (MAinz Gas-Internal Target Experiment), das sich derzeit im Aufbau befindet, wird aus zwei magnetischen Spektrometern mit einer relativen Impulsaufl\u00f6sung in der Gr\u00f6\u00dfenordnung von 10<sup>-4<\/sup> bestehen, sofern eine r\u00e4umliche Aufl\u00f6sung in der Fokalebene der Spektrometer von 100 \u00b5m erreicht wird. MAGIX wird im Beam-Dump-Modus mit festen Zielen und im ERL-Modus mit einem fensterlosen internen Gasstrahltarget arbeiten. <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/magix.uni-mainz.de\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;P2&quot;,\n    &quot;slug&quot;: &quot;p2&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2.jpg&quot;,\n        &quot;id&quot;: 10560,\n        &quot;alt&quot;: &quot;P2 Experiment&quot;,\n        &quot;caption&quot;: &quot;P2 Experiment&quot;,\n        &quot;credit&quot;: &quot; \\u00a9 JGU | Institut f\\u00fcr Physik&quot;,\n        &quot;description&quot;: &quot;P2 Experiment&quot;,\n        &quot;title&quot;: &quot;P2 Experiment&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-2048x2048.jpg 2048w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-400x400.jpg 400w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/01\\\/p2-600x600.jpg 600w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\">Das P2-Experiment ist ein magnetisches Spektrometer, dessen Hauptziel die Messung des elektroschwachen Mischungswinkels bei sehr geringem Impuls\u00fcbergang ist, der durch die Messung einer parit\u00e4tsverletzenden Links-Rechts-Asymmetrie in der elastischen Elektron-Proton-Streuung erfassbar wird. <\/p>\n\n\n<jgu-base-button style=\"display: flex; flex-wrap: wrap; column-gap: 30px; max-width: 100%; flex-direction: row; justify-content: left\">\n  \n<jgu-base-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mehr erfahren&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.blogs.uni-mainz.de\\\/fb08p2\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;styling&quot;: &quot;primary&quot;,\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;type&quot;: &quot;default&quot;,\n    &quot;iconBefore&quot;: false,\n    &quot;isSmall&quot;: false,\n    &quot;fullWidth&quot;: false,\n    &quot;className&quot;: &quot;&quot;\n}\"><\/jgu-base-buttonitem>\n\n<\/jgu-base-button><\/div>\n<\/div>\n\n\n<\/jgu-base-tabsitem>\n\n<\/jgu-base-tabs>\n\n<\/jgu-base-accordionitem>\n\n<\/jgu-base-accordion>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics.jpg&quot;,\n        &quot;id&quot;: 12189,\n        &quot;hideImageDescription&quot;: true,\n        &quot;alt&quot;: &quot;Stellar Physics&quot;,\n        &quot;caption&quot;: &quot;Stellar Physics&quot;,\n        &quot;credit&quot;: &quot;\\u00a9 adobe.stock.com&quot;,\n        &quot;description&quot;: &quot;Stellar Physics&quot;,\n        &quot;title&quot;: &quot;Stellar Physics&quot;,\n        &quot;width&quot;: 2480,\n        &quot;height&quot;: 2480,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics.jpg 2480w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics-300x300.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics-1024x1024.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics-150x150.jpg 150w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics-768x768.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics-1536x1536.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08-physics\\\/wp-content\\\/uploads\\\/sites\\\/345\\\/2025\\\/05\\\/stellar-physics-2048x2048.jpg 2048w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n<\/div>\n<\/div><\/div>\n<\/jgu-base-section>\n\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;dark&quot;,&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-dark \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"forschungsgruppen-liste\"\n\tdata-label=\"Forschungsgruppen (Liste)\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;color&quot;: &quot;default&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Forschende (alphabetisch)&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><ul class=\"styled-list hyphenation\">\n\t\n<ul class=\"styled-list hyphenation\"><jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/bacca-sonia\\\/\\&quot;&gt;Prof. Dr. Sonia Bacca&lt;\\\/a&gt; &lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;(&lt;a href=\\&quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/\\&quot;&gt;Institut f\\u00fcr Kernphysik&lt;\\\/a&gt;&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120137498&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/bacca-sonia\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Sebastian B\\u00f6ser &lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;(Experimentelle Teilchen- und Astroteilchenphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120137498&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/ag-boeser.physik.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Sebastian B\\u00f6ser&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120272020&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/ag-boeser.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/capel-pierre\\\/\\&quot;&gt;Prof. Dr. Pierre Capel&lt;\\\/a&gt; &lt;a href=\\&quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/\\&quot;&gt;(Institut f\\u00fcr Kernphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120137498&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/kph-th.physics.uni-mainz.de\\\/capel-pierre\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Martin Fertl (&lt;a href=\\&quot;https:\\\/\\\/physics.uni-mainz.de\\\/de\\\/home\\\/physikalische-forschung\\\/forschungsfelder\\\/atom-quantenphysik\\\/\\&quot;&gt;Quanten-, Atom- &amp;amp; Neutronenphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120137498&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/ag-fertl.physik.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Martin Fertl&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120272020&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/ag-fertl.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Julia Harz &lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;(Theoretische Hochenergiephysik)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120137498&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem><\/ul>\n\n<\/ul><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><ul class=\"styled-list hyphenation\">\n\t\n<ul class=\"styled-list hyphenation\"><jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/\\&quot;&gt;Prof. Dr. Joachim Kopp&lt;\\\/a&gt; &lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;(Theoretische Hochenergiephysik)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120372115&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.staff.uni-mainz.de\\\/jkopp\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Livia Ludhova &lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;(Experimentelle Teilchen- und Astroteilchenphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120233732&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;http:\\\/\\\/neutrino.gsi.de\\\/\\&quot;&gt;Gruppe von Livia Ludhova&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120347905&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/neutrino.gsi.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Uwe Oberlack &lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;(Experimentelle Teilchen- und Astroteilchenphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120233732&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Uwe Oberlack&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120347905&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;http:\\\/\\\/xenon.physik.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Pedro Schwaller &lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;(Theoretische Hochenergiephysik)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120233732&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-pedro-schwaller\\\/\\&quot;&gt;Gruppe von Pedro Schwaller&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120347905&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-pedro-schwaller\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Concettina Sfienti &lt;a href=\\&quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/\\&quot;&gt;(Institut f\\u00fcr Kernphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120233732&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/agsfienti.uni-mainz.de\\\/\\&quot;&gt;Gruppe von Concettina Sfienti&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120347905&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/agsfienti.uni-mainz.de\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem><\/ul>\n\n<\/ul><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><ul class=\"styled-list hyphenation\">\n\t\n<ul class=\"styled-list hyphenation\"><jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Dr. Carlos Tamarit &lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;(Theoretische Hochenergiephysik)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120372115&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-carlos-tamarit\\\/\\&quot;&gt;Gruppe von Carlos Tamarit&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1770309379465&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-carlos-tamarit\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/profile-page-alfons-weber\\\/\\&quot;&gt;Prof. Dr. Alfons Weber&lt;\\\/a&gt; &lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;(Experimentelle Teilchen- und Astroteilchenphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120372115&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/profile-page-alfons-weber\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Prof. Dr. Michael Wurm &lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/\\&quot;&gt;(Experimentelle Teilchen- und Astroteilchenphysik&lt;\\\/a&gt;)&quot;,\n    &quot;uuid&quot;: &quot;1737120372115&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/prof-michael-wurm\\\/\\&quot;&gt;Gruppe von Michael Wurm&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120429648&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.etap.physik.uni-mainz.de\\\/prof-michael-wurm\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Dr. Felix Yu &lt;a href=\\&quot;https:\\\/\\\/www.thep.physik.uni-mainz.de\\\/\\&quot;&gt;(Theoretische Hochenergiephysik)&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120372115&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;arrow-right-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-felix-yu\\\/\\&quot;&gt;Gruppe von Felix Yu&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1737120429648&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/thep.physics.uni-mainz.de\\\/ag-felix-yu\\\/&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem><\/ul>\n\n<\/ul><\/div>\n<\/div>\n<\/div><\/div>\n<\/jgu-base-section>    <div style=\"display: none\">\n        \n    <\/div>","protected":false},"excerpt":{"rendered":"<p>Johannes Gutenberg-Universit\u00e4t Mainz &gt; Fachbereich 08 &gt; Physik &gt; Physikforschung &gt; Forschungsfelder &gt; Astro-, Astroteilchen- &amp; Neutrinophysik<\/p>\n","protected":false},"author":311,"featured_media":0,"parent":16008,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"categories":[66],"tags":[],"class_list":["post-15642","page","type-page","status-publish","hentry","category-forschungsfeld-seiten"],"content_raw":"<!-- wp:jgu\/pageheader {\"items\":[{\"box\":{\"index\":\"Das erstaunliche Gebiet der\",\"title\":\"Astro-, Astroteilchen- \\u0026amp; Neutrinophysik\",\"link\":{\"url\":\"\",\"title\":\"Mehr erfahren\"}},\"color\":\"default\",\"image\":{\"url\":\"\"},\"imgCredit\":\"\",\"useVideo\":false,\"video\":false}],\"type\":\"border\"} \/-->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><a href=\"https:\/\/www.uni-mainz.de\/\">Johannes Gutenberg-Universit\u00e4t Mainz<\/a> &gt; <a href=\"https:\/\/www.phmi.uni-mainz.de\/\">Fachbereich 08<\/a> &gt; <a href=\"https:\/\/cms.zdv.uni-mainz.de\/fb08-physics\/de\/\">Physik<\/a> &gt; <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/\">Physikforschung<\/a> &gt; <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/\">Forschungsfelder<\/a> &gt; Astro-, Astroteilchen- &amp; Neutrinophysik<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:spacer -->\n<div style=\"height:90px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer -->\n\n<!-- wp:jgu\/anchornavigation \/-->\n\n<!-- wp:jgu\/anchorpoint {\"title\":\"Neutrinophysik\",\"slug\":\"neutrinophysik\"} \/-->\n\n<!-- wp:jgu\/section {\"color\":\"white\"} -->\n<div class=\"jgu-bgsection bg bg-white \"><div class=\"content padding-medium\"><!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Neutrinophysik\"} \/-->\n\n<!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13186,\"hideImageDescription\":true}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:spacer {\"height\":\"54px\"} -->\n<div style=\"height:54px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Neutrinos sind die Au\u00dfenseiter des Standardmodells. Da sie nur schwach mit den anderen Teilchen interagieren, sind eine Reihe von Schl\u00fcsseleigenschaften der Neutrinos noch unbekannt \u2013 einschlie\u00dflich ihrer winzigen Massen und wie diese erzeugt werden. W\u00e4hrend das Experiment Project 8 darauf abzielt, den absoluten Wert der Massen direkt zu messen, versucht man mit den Experimenten JUNO und IceCube, ihre Ordnung zu bestimmen. Eine m\u00f6gliche Erkl\u00e4rung f\u00fcr die geringe Masse der Neutrinos k\u00f6nnte sein, dass sie ihre eigenen Antiteilchen sind. Dies w\u00fcrde zu dem Ph\u00e4nomen des neutrinolosen doppelten Betazerfalls f\u00fchren, nach dem die NuDoubt++ Kollaboration sucht. Ganz allgemein k\u00f6nnten sich Neutrinos und Anti-Neutrinos unterschiedlich verhalten. Dies wird gemeinhin durch eine CP-verletzende Phase beschrieben, die beim Vergleich von Neutrino- und Anti-Neutrinostrahlen bei DUNE beobachtet werden kann. Die technologische Entwicklung f\u00fcr zuk\u00fcnftige Experimente und Querschnittsmessungen f\u00fcr Beschleuniger-Neutrinos werden am ANNIE-Experiment am Fermilab durchgef\u00fchrt.        <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Neutrinos bieten auch eine einzigartige M\u00f6glichkeit f\u00fcr die theoretische Forschung. Wir erforschen den Ursprung ihrer Massen, nicht-standardm\u00e4\u00dfige Neutrino-Wechselwirkungen und ihre m\u00f6gliche Rolle bei der Entstehung der Materie-Antimaterie-Asymmetrie (Gruppen der Professoren Harz und Kopp). Trotz vieler offener Fragen zu ihren Eigenschaften und ihrem Ursprung k\u00f6nnen Neutrinos als kosmische Boten dienen, die Informationen von einer Vielzahl astrophysikalischer Objekte transportieren \u2013 einschlie\u00dflich der Erde, der Sonne und entfernter kosmischer Quellen.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/accordion {\"selected\":1,\"hasAllOpenButton\":false} -->\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimentelle \\u0026amp; Theoretische Forschungsgruppen\",\"init\":false,\"slug\":\"experimentelle-theoretische-forschungsgruppen\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. \\u003c\/strong\\u003eSonia Bacca\",\"avatar\":{\"id\":19384,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Kernstruktur, Kernreaktion, Wenig- und Vielteilchentheorie\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/kph-th.physics.uni-mainz.de\/bacca-sonia\/\\u0022\\u003eInformationen zur Person\\u003c\/a\\u003e\",\"uuid\":\"1726244894144\",\"link\":{\"url\":\"https:\/\/kph-th.physics.uni-mainz.de\/bacca-sonia\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.kernphysik.uni-mainz.de\/\\u0022\\u003eInstitut f\u00fcr Kernphysik\\u003c\/a\\u003e\",\"uuid\":\"1737119550409\",\"link\":{\"url\":\"https:\/\/www.kernphysik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Sebastian B\u00f6ser\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19150,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Experimentelle Neutrinophysik: Masse und Mischung\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/ag-boeser.physik.uni-mainz.de\/\\u0022\\u003eGruppe von Sebastian B\u00f6ser\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/ag-boeser.physik.uni-mainz.de\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119543817\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Martin Fertl\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19401,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Pr\u00e4zisionsmessungen der fundamentalen Eigenschaften von Neutronen, Myonen und Neutrinos\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/ag-fertl.physik.uni-mainz.de\/\\u0022\\u003eGruppe von Martin Fertl\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/ag-fertl.physik.uni-mainz.de\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Quanten-, Atom- und Neutronenphysik (QUANTUM)\",\"uuid\":\"1737119550409\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Julia Harz\\u003c\/strong\\u003e\",\"avatar\":{\"id\":10521,\"url\":null,\"hideImageDescription\":false,\"credit\":\"\"},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"(Astro)Teilchenphysik und Kosmologie des fr\u00fchen Universums: Baryogenese, dunkle Materie, Neutrinos \\u0026amp; Weiterentwicklung theoretischer Methoden\",\"uuid\":\"1737119556643\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-julia-harz\/\\u0022\\u003eGruppe von Julia Harz\\u003c\/a\\u003e \",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-julia-harz\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Joachim Kopp\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19158,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Astroteilchentheorie, Neutrinos, Quantentechnologien \",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.staff.uni-mainz.de\/jkopp\/\\u0022\\u003eWebseite von Joachim Kopp\\u003c\/a\\u003e \",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/www.staff.uni-mainz.de\/jkopp\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119543817\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Livia Ludhova\\u003c\/strong\\u003e\",\"avatar\":{\"id\":12549,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"JUNO, Reaktor-, Erd-, Sonnen- und atmosph\u00e4rische Neutrinos\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022http:\/\/neutrino.gsi.de\/\\u0022\\u003eGruppe von Livia Ludhova\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"http:\/\/neutrino.gsi.de\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119550409\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eDr. Stefan Schoppmann\\u003c\/strong\\u003e\",\"avatar\":{\"id\":20577,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Forschung und Entwicklung im Bereich Szintillatoren, Neutrinos, Dunkle Materie\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.yq5.de\/science\/\\u0022\\u003eInformationen zur Person\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/www.yq5.de\/science\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Alfons Weber\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19164,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Experimentelle Neutrinophysik: Oszillationen und Wirkungsquerschnitte, Detektor-F\\u0026amp;E\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/profile-page-alfons-weber\/\\u0022\\u003eInformationen zur Person\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/profile-page-alfons-weber\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Michael Wurm\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19176,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Experimentelle Neutrinophysik, Neutrinomassenordnung, Supernova-Neutrinos\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/prof-michael-wurm\/\\u0022\\u003eGruppe von Michael Wurm\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/prof-michael-wurm\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/accordion-item -->\n\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimente\",\"init\":false,\"slug\":\"experimente\"} -->\n<!-- wp:jgu\/tabs {\"layout\":{\"type\":\"flex\",\"flexWrap\":\"nowrap\",\"justifyContent\":\"left\",\"orientation\":\"vertical\"}} -->\n<!-- wp:jgu\/tabs-item {\"title\":\"ANNIE\",\"slug\":\"annie\"} -->\n<!-- wp:jgu\/heading {\"index\":\"ANNIE\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Entdeckung von Neutrino-Wechselwirkungen\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":15292},\"caption\":\"ANNIE\"} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">ANNIE ist ein mit Gadolinium dotierter Wasser-Tscherenkov-Detektor, der Messungen im Booster Neutrino Beam (BNB) am Fermilab in Batavia (Illinois) in den Vereinigten Staaten durchf\u00fchrt. Das Hauptziel ist die Bestimmung der Neutronenmultiplikation, die durch Myon-Neutrino-Wechselwirkungen in Wasser erzeugt wird, als eine Funktion des Impuls-Transfers: Die Ergebnisse werden sich auf die Rekonstruktion von Neutrino-Wechselwirkungen in Oszillationsexperimenten mit langer Basislinie auswirken, aber auch auf die Suche nach dem Protonenzerfall und dem diffusen Supernova-Neutrino-Hintergrund in zuk\u00fcnftigen gro\u00df angelegten Detektoren.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/research-groups\/ex-annie\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"DUNE\",\"slug\":\"dune\"} -->\n<!-- wp:jgu\/heading {\"index\":\"DUNE\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Den Neutrinostrahl verstehen\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":10500},\"caption\":\"DUNE\"} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Die Mainzer Gruppe leistet einen Beitrag zu den Nahdetektoren des DUNE-Komplexes, die f\u00fcr das Verst\u00e4ndnis der Eigenschaften des Neutrinostrahls und der Wechselwirkung von Neutrinos mit Argon unerl\u00e4sslich sind. Der Prozess, bei dem ein Neutrino oder Anti-Neutrino mit Materie wechselwirkt, kann dadurch beschrieben werden, dass das Neutrino ein W- oder Z-Boson mit einem Neutron oder Proton innerhalb des Argonkerns austauscht. Um diesen Prozess zu verstehen, ist es nicht nur wichtig, die Energie-\/Impulsverteilung der Argon-Nukleonen zu kennen, sondern auch zu wissen, wie die im Kern erzeugten Teilchen beim Durchqueren des Kernmediums des Argon-Kerns interagieren.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/ex-dune\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"IceCube\",\"slug\":\"icecube\"} -->\n<!-- wp:jgu\/heading {\"index\":\"IceCube\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Mit Neutrinos das Universum erforschen\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":10503},\"caption\":\"IceCube\"} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Der IceCube-Detektor ist ein Kubikkilometer gro\u00dfes Neutrinoteleskop, das im Gletschereis am geografischen S\u00fcdpol aufgestellt wurde. Seine enorme Gr\u00f6\u00dfe erm\u00f6glicht es, die sehr seltenen Wechselwirkungen astrophysikalischer Neutrinos zu untersuchen - einzigartige Sonden aus den Tiefen des Universums, die helfen k\u00f6nnen, die schwer fassbaren Quellen der kosmischen Strahlung zu identifizieren. Gleichzeitig k\u00f6nnen die Eigenschaften der Neutrinos selbst anhand der F\u00fclle der beobachteten atmosph\u00e4rischen Neutrinos und ihrer Schwingungen auf ihrem Weg durch die Erde untersucht werden.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/research-groups\/ex-icecube\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"JUNO\",\"slug\":\"juno\"} -->\n<!-- wp:jgu\/heading {\"index\":\"JUNO\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Ordnung der Neutrinomasse\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":12537},\"caption\":\"JUNO\"} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Das Jiangmen Underground Neutrino Observatory (JUNO) ist ein hochmodernes Neutrinoexperiment in China, mit dem die Neutrinomassenhierarchie mit noch nie dagewesener Pr\u00e4zision bestimmt werden soll. Sein Hauptziel ist es, die Ordnung der Neutrinomassen zu kl\u00e4ren, eine grundlegende Frage der Teilchenphysik. Das Besondere an JUNO ist sein massiver 20.000-Tonnen-Fl\u00fcssigszintillator-Detektor, der eine au\u00dfergew\u00f6hnliche Energieaufl\u00f6sung und Empfindlichkeit bietet. Neben den Reaktorneutrinos wird JUNO auch Sonnen-, Atmosph\u00e4ren-, Supernovaausbruchsneutrinos, Geoneutrinos und den diffusen Supernova-Neutrino-Hintergrund (DSNB) untersuchen und bietet damit ein breit gef\u00e4chertes Wissenschaftsprogramm. Dank seiner Gr\u00f6\u00dfe und Vielseitigkeit wird JUNO eine Schl\u00fcsselrolle bei der Verbesserung unseres Verst\u00e4ndnisses der Neutrino-Eigenschaften und astrophysikalischer Prozesse spielen.    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/research-groups\/ex-juno\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"NuDoubt\u207a\u207a\",\"slug\":\"nudoubt\"} -->\n<!-- wp:jgu\/heading {\"index\":\"NuDoubt\u207a\u207a\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Identifizierung des Ursprungs der Neutrinomasse\"} \/-->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Die Dominanz der gew\u00f6hnlichen Materie gegen\u00fcber der Antimaterie im beobachtbaren Universum ist eines der gr\u00f6\u00dften ungel\u00f6sten R\u00e4tsel der Kosmologie. Ohne diese Asymmetrie w\u00e4re das Universum v\u00f6llig leer. Eine m\u00f6gliche Erkl\u00e4rung ist der neutrinolose Doppelbetazerfall, der beweist, dass Materie und Antimaterie in bestimmten Situationen identisch sind. Das NuDoubt\u207a\u207a-Experiment zielt auf die Messung von Zwei-Neutrino und neutrinolosen positiven doppelten Betazerf\u00e4llen (2\u03b2\u207a\/EC\u03b2\u207a). Es basiert auf einem neuen Detektorkonzept, das hybride und opake Szintillatoren mit einer neuartigen Lichtauslesetechnik kombiniert. Die Technologie ist besonders geeignet, um Positronensignaturen (\u03b2\u207a) zu erkennen. In der ersten Phase wird NuDoubt\u207a\u207a mit angereichertem Kr-78 Gas unter Hochdruckbeladung arbeiten. Es erwartet die Entdeckung von Zwei-Neutrino positiven doppelten Betazerfallsmodi von Kr-78 innerhalb von einer Tonnen-Woche Exposition und ist in der Lage, neutrinolose positive doppelte Betazerfallsmodi mit einer um mehrere Gr\u00f6\u00dfenordnungen verbesserten Signifikanz im Vergleich zu den derzeitigen experimentellen Grenzen zu untersuchen.       <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":12536},\"caption\":\"NuDoubt\u207a\u207a\"} \/-->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/nudoubt.uni-mainz.de\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"PROJECT 8\",\"slug\":\"project-8\"} -->\n<!-- wp:jgu\/heading {\"index\":\"Project 8\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Messung der Neutrinomasse\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":12539},\"caption\":\"Project 8\"} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">W\u00e4hrend man lange Zeit dachte, dass Neutrinos masselos sind, ist ihre Oszillation ein klarer Beweis daf\u00fcr, dass sie es nicht sind. Die exakteste Methode zur Bestimmung dieser winzigen Massen im Labor ist die Beobachtung des Endpunkts des \u03b2-Zerfallspektrums von Tritium. Die neuartige CRES-Methode zur Bestimmung der \u03b2-Energie durch die schwache Radioemission wird die Energieaufl\u00f6sung durch eine genauere Messung der Elektronenbewegung verbessern, aber auch dadurch, dass sie die Verwendung von Tritiumatomen anstelle von Molek\u00fclen erm\u00f6glicht. Die Erzeugung dieser Atome stellt eine gro\u00dfe technologische Herausforderung dar, da die Atome auf \u00fcber 2300K erhitzt werden m\u00fcssen, um sie zu dissoziieren, aber in der Falle nur Milli-Kelvin-Temperaturen haben k\u00f6nnen. Eine weitere Herausforderung stellen die Magnetfelder dar, die einen genau kontrollierten homogenen Bereich, in dem die Elektronenenergie gemessen wird, und steile W\u00e4nde ben\u00f6tigen, um sowohl Elektronen als auch Atome einzufangen.     <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/project8.physik.uni-mainz.de\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"T2K\",\"slug\":\"t2k\"} -->\n<!-- wp:jgu\/heading {\"index\":\"T2K\",\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Erforschung der Neutrino-Oszillation\"} \/-->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">T2K ist ein Neutrino-Oszillationsexperiment der zweiten Generation. Es verwendet einen au\u00dferaxialen Neutrinostrahl, der im J-PARC Beschleunigerkomplex in Tokai an der Ostk\u00fcste Japans erzeugt wird. Der Beschleunigerkomplex wird schlie\u00dflich den weltweit intensivsten Neutrinostrahl mit langer Basislinie erzeugen, indem Protonen mit einer Strahlleistung von etwa 500 kW auf ein Kohlenstofftarget geschossen werden. Die entstehenden Neutrinos werden zun\u00e4chst in einem nahe gelegenen Detektorkomplex gemessen, bevor sie 295 km weiter zum Super-Kamiokande-Detektor gelangen.   <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"50%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:50%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":17292}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"50%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:50%\"><!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/ex-t2k\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n<!-- \/wp:jgu\/tabs -->\n<!-- \/wp:jgu\/accordion-item -->\n<!-- \/wp:jgu\/accordion --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div><\/div>\n<!-- \/wp:jgu\/section -->\n\n<!-- wp:jgu\/section {\"color\":\"light\"} -->\n<div class=\"jgu-bgsection bg bg-light \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"Fr\u00fches Universum\",\"slug\":\"fruhes-universum\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Fr\u00fches Universum\"} \/-->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Das fr\u00fche Universum, vom Urknall bis zur Entstehung von Galaxien und Sternen, ist der Schl\u00fcssel zu mehreren ungel\u00f6sten fundamentalen Fragen der Physik. Dazu geh\u00f6ren die Dynamik der Ausdehnung, der Ursprung der Asymmetrie zwischen Materie und Antimaterie sowie die Natur und die Entstehung der dunklen Materie. Einblicke in diese Epoche gew\u00e4hren Beobachtungen des kosmischen Mikrowellenhintergrunds, gro\u00dfr\u00e4umiger Strukturen und zunehmend auch die Suche nach Gravitationswellen.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Unsere Forschung befasst sich mit diesen tiefgreifenden Fragen durch eine Vielzahl von Ans\u00e4tzen. Wir untersuchen Mechanismen wie die Baryogenese und die Leptogenese, um den Ursprung der Asymmetrie zwischen Materie und Antimaterie zu erkl\u00e4ren. Wir untersuchen Phasen\u00fcberg\u00e4nge und die Dynamik des dunklen Sektors, die zu Gravitationswellen und anderen Beobachtungen des fr\u00fchen Universums f\u00fchren. Wir untersuchen auch die inflation\u00e4re Dynamik, gefolgt von der Aufw\u00e4rmung des Universums, erforschen Kandidaten f\u00fcr dunkle Materie und entwickeln die theoretischen Grundlagen der Kosmologie des fr\u00fchen Universums mit Hilfe der Quantenfeldtheorie in gekr\u00fcmmter Raumzeit und der Nicht-Gleichgewichts-Quantenfeldtheorie weiter. Dabei stellen wir enge Verbindungen zwischen der Hochenergiephysik und kosmologischen Beobachtungen her.     Auf der experimentellen Seite wird das GravNET-Experiment nach Gravitationswellen bei GigaHertz-Frequenzen suchen, mit dem Ziel, das fr\u00fche Universum kurz nach dem Ende der Inflation und der Wiedererw\u00e4rmung zu untersuchen. Erg\u00e4nzende Untersuchungen zur Physik des fr\u00fchen Universums werden in der Hochenergie-Teilchenphysik durchgef\u00fchrt, insbesondere die Erforschung der <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/hochenergie-teilchenphysik\/#die-physik-des-higgs-sektors\">Higgs-Physik<\/a> im Zusammenhang mit dem elektroschwachen Phasen\u00fcbergang und der <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/hochenergie-teilchenphysik\/#quark-und-lepton-flavour-physik\">Quark- und Leptonenflavour-Physik<\/a> als Schl\u00fcsselelement der Baryogenese.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">&nbsp;<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/accordion {\"selected\":1,\"hasAllOpenButton\":false} -->\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimentelle \\u0026amp; Theoretische Forschungsgruppen\",\"init\":false,\"slug\":\"experimentelle-theoretische-forschungsgruppen-1\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.34%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.34%\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. \\u003c\/strong\\u003eDmitry Budker\",\"avatar\":{\"id\":13545,\"url\":null,\"hideImageDescription\":false,\"credit\":\"\"},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Grundlegende Symmetrien, magnetische Resonanz, Sensorik\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/budker.uni-mainz.de\/\\u0022\\u003eGruppe von Dmitry Budker\\u003c\/a\\u003e \",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/budker.uni-mainz.de\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Quanten-, Atom- und Neutronenphysik (QUANTUM)\",\"uuid\":\"1737119543817\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"33.34%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.34%\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Julia Harz\\u003c\/strong\\u003e\",\"avatar\":{\"id\":10521,\"url\":null,\"hideImageDescription\":false,\"credit\":\"\"},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"(Astro)Teilchenphysik und Kosmologie des fr\u00fchen Universums: Baryogenese, dunkle Materie, Neutrinos \\u0026amp; Weiterentwicklung theoretischer Methoden\",\"uuid\":\"1737119556643\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-julia-harz\/\\u0022\\u003eGruppe von Julia Harz\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-julia-harz\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Joachim Kopp\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19158,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Astroteilchentheorie, Neutrinos, Quantentechnologien \",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.staff.uni-mainz.de\/jkopp\/\\u0022\\u003eWebseite von Joachim Kopp\\u003c\/a\\u003e \",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/www.staff.uni-mainz.de\/jkopp\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119543817\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Pedro Schwaller\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19186,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Physik jenseits des Standardmodells, Kosmologie des fr\u00fchen Universums, Gravitationswellen\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-pedro-schwaller\/\\u0022\\u003eGruppe von Pedro Schwaller\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-pedro-schwaller\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119697836\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eDr. Carlos Tamarit\\u003c\/strong\\u003e\",\"avatar\":{\"id\":10530,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Effekte au\u00dferhalb des Gleichgewichts und bei endlicher Temperatur, Phasen\u00fcberg\u00e4nge, Quantenfeldtheorie\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-carlos-tamarit\/\\u0022\\u003eGruppe von Carlos Tamarit\\u003c\/a\\u003e\",\"uuid\":\"1770309414562\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-carlos-tamarit\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119703835\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/accordion-item -->\n\n<!-- wp:jgu\/accordion-item {\"title\":\"Experiment\",\"init\":false,\"slug\":\"experiment\"} -->\n<!-- wp:jgu\/tabs -->\n<!-- wp:jgu\/tabs-item {\"title\":\"GravNet\",\"slug\":\"gravnet\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13201}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Das GravNet-Projekt (\"A Global Network for the Search for High Frequency Gravitational Waves\") schl\u00e4gt eine Br\u00fccke zwischen der Teilchenphysik und der Gravitationswellenphysik. Es zielt darauf ab, ein globales Netzwerk von Detektoren zu errichten, das auf die Suche nach hochfrequenten Gravitationswellen ausgerichtet ist. Dieses Detektornetzwerk k\u00f6nnte dazu beitragen, eine der gr\u00f6\u00dften ungel\u00f6sten Fragen der modernen Physik zu beantworten: die Natur der dunklen Materie. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/budker.uni-mainz.de\/?p=2533\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n<!-- \/wp:jgu\/tabs -->\n<!-- \/wp:jgu\/accordion-item -->\n<!-- \/wp:jgu\/accordion --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13527,\"hideImageDescription\":true}} \/--><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div><\/div>\n<!-- \/wp:jgu\/section -->\n\n<!-- wp:jgu\/section {\"color\":\"white\"} -->\n<div class=\"jgu-bgsection bg bg-white \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"Dunkle Materie\",\"slug\":\"dunkle-materie\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Dunkle Materie\"} \/-->\n\n<!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13204,\"hideImageDescription\":true}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:spacer {\"height\":\"51px\"} -->\n<div style=\"height:51px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Astrophysikalische Beobachtungen liefern \u00fcberw\u00e4ltigende Beweise f\u00fcr die Existenz einer zus\u00e4tzlichen nicht leuchtenden Materiekomponente in unserem Universum, die gemeinhin als dunkle Materie bezeichnet wird. \u00dcber ihre Eigenschaften ist jedoch nur wenig bekannt. Tats\u00e4chlich ist ihre Masse praktisch unbegrenzt und reicht von ultraleichten Skalarfeldern mit Massen, die viel leichter sind als die der Neutrinos, bis hin zu primordialen schwarzen L\u00f6chern mit einem Vielfachen der Sonnenmasse. Die Bestimmung der Natur der dunklen Materie ist daher eine der wichtigsten offenen Fragen der Astroteilchenphysik.   <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">In Mainz suchen die Experimente CASPEr und GNOME mit hochempfindlichen Spinpr\u00e4zessionsger\u00e4ten und optischen Magnetometern (<a href=\"https:\/\/budker.uni-mainz.de\/\">Gruppe von Dmitry Budker<\/a>) nach ultraleichter dunkler Materie. Das XENON-Experiment sucht nach Kollisionen von Dunkle-Materie-Teilchen im GeV- bis TeV-Bereich mit Xenon-Atomen in einem hoch abgeschirmten unterirdischen Experiment. Das COSI Compton-Teleskop, ein Satellit, der 2027 gestartet werden soll, wird nach Gammastrahlenemission von dunkler Materie im MeV-Bereich suchen. Die Mainzer Theoriegruppen entwickeln und analysieren neue Modelle der dunklen Materie, verbessern die Methoden zur theoretischen Vorhersage der H\u00e4ufigkeit dunkler Materie und ihrer Wechselwirkungen und entwerfen neue Strategien zur Suche nach dunkler Materie. <a href=\"https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/hochenergie-teilchenphysik\/\">Erg\u00e4nzt werden diese Bem\u00fchungen durch die Suche nach Teilchen der dunklen Materie oder ihren Vermittlern am MESA-Beschleuniger in Mainz und im Rahmen der ATLAS-Kollaboration.<\/a>    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/accordion {\"selected\":1,\"hasAllOpenButton\":false} -->\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimentelle \\u0026amp; Theoretische Forschungsgruppen\",\"init\":false,\"slug\":\"experimentelle-theoretische-forschungsgruppen-2\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Julia Harz\\u003c\/strong\\u003e\",\"avatar\":{\"id\":10521,\"url\":null,\"hideImageDescription\":false,\"credit\":\"\"},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"(Astro)Teilchenphysik und Kosmologie des fr\u00fchen Universums: Baryogenese, dunkle Materie, Neutrinos \\u0026amp; Weiterentwicklung theoretischer Methoden\",\"uuid\":\"1737119556643\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-julia-harz\/\\u0022\\u003eGruppe von Julia Harz \\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-julia-harz\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119556643\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Joachim Kopp\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19158,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Astroteilchentheorie, Neutrinos, Quantentechnologien\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.staff.uni-mainz.de\/jkopp\/\\u0022\\u003eWebseite von Joachim Kopp  \\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/www.staff.uni-mainz.de\/jkopp\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\\u003cbr\\u003e\",\"uuid\":\"1737119543817\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Uwe Oberlack\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19191,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Experimentelle Astroteilchenphysik: Dunkle Materie, Gammastrahlenastronomie \",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022http:\/\/xenon.physik.uni-mainz.de\\u0022\\u003eGruppe von Uwe Oberlack\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"http:\/\/xenon.physik.uni-mainz.de\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119697836\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Pedro Schwaller\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19186,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Theoretische Teilchenphysik, Physik jenseits des Standardmodells, Kosmologie des fr\u00fchen Universums, Gravitationswellen\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-pedro-schwaller\/\\u0022\\u003eGruppe von Pedro Schwaller\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-pedro-schwaller\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119697836\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eDr. Felix Yu\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19197,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Collider-Ph\u00e4nomenologie, Higgs-Physik, dunkle Materie, Axion-Physik, nicht-perturbative Physik\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-felix-yu\/\\u0022\\u003eGruppe von Felix Yu\\u003c\/a\\u003e \",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-felix-yu\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003eTheoretische Hochenergiephysik (THEP)\\u003c\/a\\u003e\",\"uuid\":\"1737119703835\",\"link\":{\"url\":\"https:\/\/www.thep.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/accordion-item -->\n\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimente\",\"init\":false,\"slug\":\"experimente-2\"} -->\n<!-- wp:jgu\/tabs -->\n<!-- wp:jgu\/tabs-item {\"title\":\"COSI\",\"slug\":\"cosi\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13213}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">COSI ist ein weltraumgest\u00fctztes Gammastrahlen-Observatorium, das die Geheimnisse von Sternexplosionen aufdecken soll, indem es radioaktive Isotope aufsp\u00fcrt, die in Supernovae geschmiedet wurden. Durch die Kartierung der Gammastrahlenemissionen von Isotopen wie Aluminium-26 und Eisen-60 wird COSI die chemische Entwicklung der Milchstra\u00dfe nachzeichnen und aufzeigen, wo schwere Elemente entstehen. Es wird auch nach Gammastrahlen von Titan-44 suchen, einer Schl\u00fcsselsignatur von jungen Supernova-\u00dcberresten, die Aufschluss dar\u00fcber geben, wie massereiche Sterne ihr Leben beenden. COSI wird die 511 keV-Linie untersuchen, die ausgesendet wird, wenn Positronen mit Elektronen vernichtet werden, und so dazu beitragen, die Quellen von Antimaterie in unserer Galaxie zu identifizieren. Mit seinem empfindlichen Compton-Teleskop wird COSI den MeV-Gammastrahlenhimmel erforschen - eine weitgehend unerforschte Region, die ein neues Fenster zu Ph\u00e4nomenen wie Schwarzen L\u00f6chern, Neutronensternen und Gammastrahlenausbr\u00fcchen \u00f6ffnet.    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"http:\/\/xenon.physik.uni-mainz.de\/de\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"XENON\",\"slug\":\"xenon\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13212}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">XENON ist ein tief unter der Erde liegendes Experiment, das Teilchen der dunklen Materie aufsp\u00fcren soll, indem es ihre seltenen Wechselwirkungen mit fl\u00fcssigen Xenon-Atomen aufzeichnet. XENON ist unter dem italienischen Berg Gran Sasso gelegen und verwendet eine Zweiphasen-Zeitprojektionskammer, um nach schwach wechselwirkenden massereichen Teilchen (WIMPs) zu suchen, einem der wichtigsten Kandidaten f\u00fcr dunkle Materie. Der Detektor sucht nach winzigen Lichtblitzen und Elektronen, die entstehen, wenn ein WIMP mit einem Xenon-Kern kollidiert - Signale, die auf das Vorhandensein dunkler Materie hinweisen k\u00f6nnten. Die Oberlack-Gruppe in Mainz tr\u00e4gt zu XENON bei, indem sie fortschrittliche Datenanalysetechniken und Pr\u00e4zisionskalibrierungswerkzeuge entwickelt, die dabei helfen, potenzielle Signale der dunklen Materie von Hintergrundrauschen zu unterscheiden. Diese Bem\u00fchungen werden eine entscheidende Rolle im kommenden XLCD-Programm spielen, das darauf abzielt, sowohl die dunkle Materie als auch die Neutrinophysik mit noch gr\u00f6\u00dferer Empfindlichkeit zu untersuchen.    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"http:\/\/xenon.physik.uni-mainz.de\/de\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n<!-- \/wp:jgu\/tabs -->\n<!-- \/wp:jgu\/accordion-item -->\n<!-- \/wp:jgu\/accordion --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div><\/div>\n<!-- \/wp:jgu\/section -->\n\n<!-- wp:jgu\/section {\"color\":\"light\"} -->\n<div class=\"jgu-bgsection bg bg-light \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"Sterne \\u0026amp; Galaxien\",\"slug\":\"stellar-galaktische-physik\",\"customSlug\":true} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Sterne \\u0026amp; Galaxien\"} \/-->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Wie entstehen die Elemente in den Sternen und was geschieht mit der Materie unter den extremsten Bedingungen im Universum? Wie werden die Elemente in unserer Milchstra\u00dfe geschmiedet? Was geschieht bei einer Supernova-Explosion? Unsere Forschung geht diesen Fragen mit Experimenten am Himmel und im Labor auf den Grund. Unsere Studien zur stellaren Nukleosynthese und zur Struktur von Neutronensternen kombinieren modernste Experimente mit theoretischer Modellierung. Am Hochintensit\u00e4tsbeschleuniger MESA untersuchen wir Kernreaktionen, die f\u00fcr das Verst\u00e4ndnis der Entstehung von Elementen in Sternen unerl\u00e4sslich sind. Gleichzeitig erforschen wir die Eigenschaften neutronenreicher Materie, um das Verhalten von Materie unter extremen Dichten und die Physik, die Neutronensterne formt, besser zu verstehen. Der Compton Spectrometer and Imager (COSI) ist eine Satellitenmission zur Erforschung der Sternenphysik, insbesondere der Gammastrahlenemissionen von radioaktiven Isotopen, die in Supernovae entstehen, und des Ursprungs von Positronen in unserer Galaxie.       <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/accordion {\"selected\":1,\"hasAllOpenButton\":false} -->\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimentelle und theoretische Forschungsgruppen\",\"init\":false,\"slug\":\"experimental-amp-theoretical-research-groups-1\",\"customSlug\":true} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Pierre Capel\\u003c\/strong\\u003e\",\"avatar\":{\"id\":10551,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Nukleare Astrophysik, Kernreaktionstheorie, Strahlungseinfang, Coulomb-Aufl\u00f6sung, Photo-Dissoziation\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/kph-th.physics.uni-mainz.de\/capel-pierre\/\\u0022\\u003eInformationen zur Person\\u003c\/a\\u003e\",\"uuid\":\"1726244894144\",\"link\":{\"url\":\"https:\/\/kph-th.physics.uni-mainz.de\/capel-pierre\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.kernphysik.uni-mainz.de\/\\u0022\\u003eInstitut f\u00fcr Kernphysik\\u003c\/a\\u003e\",\"uuid\":\"1751294537916\",\"link\":{\"url\":\"https:\/\/www.kernphysik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Uwe Oberlack\\u003c\/strong\\u003e\",\"avatar\":{\"id\":19191,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Experimentelle Astroteilchenphysik: Dunkle Materie, Gammastrahlenastronomie \",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022http:\/\/xenon.physik.uni-mainz.de\\u0022\\u003eGruppe von Uwe Oberlack\\u003c\/a\\u003e\",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"http:\/\/xenon.physik.uni-mainz.de\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003eExperimentelle Teilchen- und Astroteilchenphysik (ETAP)\\u003c\/a\\u003e\",\"uuid\":\"1737119697836\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Concettina Sfienti\\u003c\/strong\\u003e\",\"avatar\":{\"id\":10548,\"url\":null,\"hideImageDescription\":false},\"color\":\"blue-gray\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"lightbulb-solid\",\"title\":\"Experimentelle nukleare Astrophysik, Zustandsgleichung der Kernmaterie, Kernreaktionen\",\"uuid\":\"1726244894144\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/agsfienti.uni-mainz.de\/\\u0022\\u003eGruppe von Concettina Sfienti\\u003c\/a\\u003e \",\"uuid\":\"1734087422868\",\"link\":{\"url\":\"https:\/\/agsfienti.uni-mainz.de\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.kernphysik.uni-mainz.de\/\\u0022\\u003eInstitut f\u00fcr Kernphysik\\u003c\/a\\u003e\",\"uuid\":\"1751294552349\",\"link\":{\"url\":\"https:\/\/www.kernphysik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/accordion-item -->\n\n<!-- wp:jgu\/accordion-item {\"title\":\"Experimente\",\"init\":false,\"slug\":\"experimente-1\"} -->\n<!-- wp:jgu\/tabs -->\n<!-- wp:jgu\/tabs-item {\"title\":\"Belle II\",\"slug\":\"belle-ii\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":10566}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Der Belle II-Detektor am SuperKEKB-Beschleuniger in Tsukuba (Japan) ist ein Experiment zur Suche nach neuer Physik jenseits des Standardmodells durch die Messung seltener Zerf\u00e4lle von Elementarteilchen wie Bottom- und Charm-Quarks oder Tau-Leptonen. Belle II wird sich mit dem Problem befassen, Beweise f\u00fcr die Existenz neuer unbekannter Teilchen zu finden, die eine m\u00f6gliche Erkl\u00e4rung f\u00fcr die Vorherrschaft der Materie im Vergleich zur Antimaterie liefern und andere offene grundlegende Fragen zu unserem Verst\u00e4ndnis des Universums beantworten k\u00f6nnen. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.blogs.uni-mainz.de\/fb08-nuclear-physics\/belle-ii-experiment\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"COSI\",\"slug\":\"cosi-1\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13213}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">COSI ist ein weltraumgest\u00fctztes Gammastrahlen-Observatorium, das die Geheimnisse von Sternexplosionen aufdecken soll, indem es radioaktive Isotope aufsp\u00fcrt, die in Supernovae geschmiedet wurden. Durch die Kartierung der Gammastrahlenemissionen von Isotopen wie Aluminium-26 und Eisen-60 wird COSI die chemische Entwicklung der Milchstra\u00dfe nachzeichnen und aufzeigen, wo schwere Elemente entstehen. Es wird auch nach Gammastrahlen von Titan-44 suchen, einer Schl\u00fcsselsignatur von jungen Supernova-\u00dcberresten, die Aufschluss dar\u00fcber geben, wie massereiche Sterne ihr Leben beenden. COSI wird die 511 keV-Linie untersuchen, die ausgesendet wird, wenn Positronen mit Elektronen vernichtet werden, und so dazu beitragen, die Quellen von Antimaterie in unserer Galaxie zu identifizieren. Mit seinem empfindlichen Compton-Teleskop wird COSI den MeV-Gammastrahlenhimmel erforschen - eine weitgehend unerforschte Region, die ein neues Fenster zu Ph\u00e4nomenen wie Schwarzen L\u00f6chern, Neutronensternen und Gammastrahlenausbr\u00fcchen \u00f6ffnet.    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"http:\/\/xenon.physik.uni-mainz.de\/de\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"MAGIX\",\"slug\":\"magix\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":11936}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Das MAGIX-Experiment (MAinz Gas-Internal Target Experiment), das sich derzeit im Aufbau befindet, wird aus zwei magnetischen Spektrometern mit einer relativen Impulsaufl\u00f6sung in der Gr\u00f6\u00dfenordnung von 10<sup>-4<\/sup> bestehen, sofern eine r\u00e4umliche Aufl\u00f6sung in der Fokalebene der Spektrometer von 100 \u00b5m erreicht wird. MAGIX wird im Beam-Dump-Modus mit festen Zielen und im ERL-Modus mit einem fensterlosen internen Gasstrahltarget arbeiten. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/magix.uni-mainz.de\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"P2\",\"slug\":\"p2\"} -->\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":10560}} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph -->\n<p class=\"has-big-font-size\">Das P2-Experiment ist ein magnetisches Spektrometer, dessen Hauptziel die Messung des elektroschwachen Mischungswinkels bei sehr geringem Impuls\u00fcbergang ist, der durch die Messung einer parit\u00e4tsverletzenden Links-Rechts-Asymmetrie in der elastischen Elektron-Proton-Streuung erfassbar wird. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Mehr erfahren\",\"link\":{\"url\":\"https:\/\/www.blogs.uni-mainz.de\/fb08p2\/\",\"linkTarget\":\"\",\"rel\":\"\"}} \/-->\n<!-- \/wp:jgu\/button --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n<!-- \/wp:jgu\/tabs-item -->\n<!-- \/wp:jgu\/tabs -->\n<!-- \/wp:jgu\/accordion-item -->\n<!-- \/wp:jgu\/accordion --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":12189,\"hideImageDescription\":true}} \/--><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div><\/div>\n<!-- \/wp:jgu\/section -->\n\n<!-- wp:jgu\/section {\"color\":\"dark\"} -->\n<div class=\"jgu-bgsection bg bg-dark \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"Forschungsgruppen (Liste)\",\"slug\":\"forschungsgruppen-liste\"} \/-->\n\n<!-- wp:jgu\/heading {\"color\":\"default\",\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Forschende (alphabetisch)\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/list -->\n<ul class=\"styled-list hyphenation\"><!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/kph-th.physics.uni-mainz.de\/bacca-sonia\/\\u0022\\u003eProf. Dr. Sonia Bacca\\u003c\/a\\u003e \\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003e(\\u003ca href=\\u0022https:\/\/www.kernphysik.uni-mainz.de\/\\u0022\\u003eInstitut f\u00fcr Kernphysik\\u003c\/a\\u003e\\u003c\/a\\u003e)\",\"uuid\":\"1737120137498\",\"link\":{\"url\":\"https:\/\/kph-th.physics.uni-mainz.de\/bacca-sonia\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Sebastian B\u00f6ser \\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003e(Experimentelle Teilchen- und Astroteilchenphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120137498\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/ag-boeser.physik.uni-mainz.de\/\\u0022\\u003eGruppe von Sebastian B\u00f6ser\\u003c\/a\\u003e\",\"uuid\":\"1737120272020\",\"link\":{\"url\":\"https:\/\/ag-boeser.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/kph-th.physics.uni-mainz.de\/capel-pierre\/\\u0022\\u003eProf. Dr. Pierre Capel\\u003c\/a\\u003e \\u003ca href=\\u0022https:\/\/www.kernphysik.uni-mainz.de\/\\u0022\\u003e(Institut f\u00fcr Kernphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120137498\",\"link\":{\"url\":\"https:\/\/kph-th.physics.uni-mainz.de\/capel-pierre\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Martin Fertl (\\u003ca href=\\u0022https:\/\/physics.uni-mainz.de\/de\/home\/physikalische-forschung\/forschungsfelder\/atom-quantenphysik\/\\u0022\\u003eQuanten-, Atom- \\u0026amp; Neutronenphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120137498\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/ag-fertl.physik.uni-mainz.de\/\\u0022\\u003eGruppe von Martin Fertl\\u003c\/a\\u003e\",\"uuid\":\"1737120272020\",\"link\":{\"url\":\"https:\/\/ag-fertl.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Julia Harz \\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003e(Theoretische Hochenergiephysik)\\u003c\/a\\u003e\",\"uuid\":\"1737120137498\"} \/--><\/ul>\n<!-- \/wp:jgu\/list --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/list -->\n<ul class=\"styled-list hyphenation\"><!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.staff.uni-mainz.de\/jkopp\/\\u0022\\u003eProf. Dr. Joachim Kopp\\u003c\/a\\u003e \\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003e(Theoretische Hochenergiephysik)\\u003c\/a\\u003e\",\"uuid\":\"1737120372115\",\"link\":{\"url\":\"https:\/\/www.staff.uni-mainz.de\/jkopp\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Livia Ludhova \\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003e(Experimentelle Teilchen- und Astroteilchenphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120233732\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022http:\/\/neutrino.gsi.de\/\\u0022\\u003eGruppe von Livia Ludhova\\u003c\/a\\u003e\",\"uuid\":\"1737120347905\",\"link\":{\"url\":\"http:\/\/neutrino.gsi.de\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Uwe Oberlack \\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003e(Experimentelle Teilchen- und Astroteilchenphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120233732\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022http:\/\/xenon.physik.uni-mainz.de\/\\u0022\\u003eGruppe von Uwe Oberlack\\u003c\/a\\u003e\",\"uuid\":\"1737120347905\",\"link\":{\"url\":\"http:\/\/xenon.physik.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Pedro Schwaller \\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003e(Theoretische Hochenergiephysik)\\u003c\/a\\u003e\",\"uuid\":\"1737120233732\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-pedro-schwaller\/\\u0022\\u003eGruppe von Pedro Schwaller\\u003c\/a\\u003e\",\"uuid\":\"1737120347905\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-pedro-schwaller\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Concettina Sfienti \\u003ca href=\\u0022https:\/\/www.kernphysik.uni-mainz.de\/\\u0022\\u003e(Institut f\u00fcr Kernphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120233732\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/agsfienti.uni-mainz.de\/\\u0022\\u003eGruppe von Concettina Sfienti\\u003c\/a\\u003e\",\"uuid\":\"1737120347905\",\"link\":{\"url\":\"https:\/\/agsfienti.uni-mainz.de\/\"}} \/-->\n<!-- \/wp:jgu\/list-item --><\/ul>\n<!-- \/wp:jgu\/list --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:jgu\/list -->\n<ul class=\"styled-list hyphenation\"><!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Dr. Carlos Tamarit \\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003e(Theoretische Hochenergiephysik)\\u003c\/a\\u003e\",\"uuid\":\"1737120372115\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-carlos-tamarit\/\\u0022\\u003eGruppe von Carlos Tamarit\\u003c\/a\\u003e\",\"uuid\":\"1770309379465\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-carlos-tamarit\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/profile-page-alfons-weber\/\\u0022\\u003eProf. Dr. Alfons Weber\\u003c\/a\\u003e \\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003e(Experimentelle Teilchen- und Astroteilchenphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120372115\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/profile-page-alfons-weber\/\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Prof. Dr. Michael Wurm \\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/\\u0022\\u003e(Experimentelle Teilchen- und Astroteilchenphysik\\u003c\/a\\u003e)\",\"uuid\":\"1737120372115\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/www.etap.physik.uni-mainz.de\/prof-michael-wurm\/\\u0022\\u003eGruppe von Michael Wurm\\u003c\/a\\u003e\",\"uuid\":\"1737120429648\",\"link\":{\"url\":\"https:\/\/www.etap.physik.uni-mainz.de\/prof-michael-wurm\/\"}} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Dr. Felix Yu \\u003ca href=\\u0022https:\/\/www.thep.physik.uni-mainz.de\/\\u0022\\u003e(Theoretische Hochenergiephysik)\\u003c\/a\\u003e\",\"uuid\":\"1737120372115\"} -->\n<!-- wp:jgu\/list-item {\"icon\":\"arrow-right-solid\",\"title\":\"\\u003ca href=\\u0022https:\/\/thep.physics.uni-mainz.de\/ag-felix-yu\/\\u0022\\u003eGruppe von Felix Yu\\u003c\/a\\u003e\",\"uuid\":\"1737120429648\",\"link\":{\"url\":\"https:\/\/thep.physics.uni-mainz.de\/ag-felix-yu\/\"}} \/-->\n<!-- \/wp:jgu\/list-item --><\/ul>\n<!-- \/wp:jgu\/list --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div><\/div>\n<!-- \/wp:jgu\/section -->","_links":{"self":[{"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/pages\/15642","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/users\/311"}],"replies":[{"embeddable":true,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/comments?post=15642"}],"version-history":[{"count":15,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/pages\/15642\/revisions"}],"predecessor-version":[{"id":20728,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/pages\/15642\/revisions\/20728"}],"up":[{"embeddable":true,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/pages\/16008"}],"wp:attachment":[{"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/media?parent=15642"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/categories?post=15642"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/physics.uni-mainz.de\/de\/wp-json\/wp\/v2\/tags?post=15642"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}