{"id":25543,"date":"2026-04-20T12:00:00","date_gmt":"2026-04-20T10:00:00","guid":{"rendered":"https:\/\/www.fb08.uni-mainz.de\/?p=25543"},"modified":"2026-04-20T09:48:01","modified_gmt":"2026-04-20T07:48:01","slug":"precision-measurement-at-the-mainz-microtron-mami-hypertriton-more-strongly-bound-than-previously-assumed","status":"publish","type":"post","link":"https:\/\/www.fb08.uni-mainz.de\/en\/2026\/04\/20\/precision-measurement-at-the-mainz-microtron-mami-hypertriton-more-strongly-bound-than-previously-assumed\/","title":{"rendered":"Precision measurement at the Mainz Microtron MAMI: Hypertriton more strongly bound than previously assumed"},"content":{"rendered":"\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;index&quot;: &quot;20 April 2026&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;Precision measurement at the Mainz Microtron MAMI: Hypertriton more strongly bound than previously assumed&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\"><strong>International research team achieves most precise measurement of hypertriton binding energy to date \/ New insights into the strong nuclear forces that hold matter together<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">An international research team of the A1 Collaboration at the Mainz Microtron (MAMI) of Johannes Gutenberg University Mainz (JGU) has succeeded in determining the binding energy of the hypertriton with unprecedented precision. This experiment provides crucial new insights into the interaction between hyperons and nucleons \u2013 an aspect of the strong nuclear force that has so far remained insufficiently understood. The results show that the hypertriton is significantly more strongly bound than many earlier experiments suggested. The renowned scientific journal <em>Physical Review Letters<\/em> has recently published the study.   <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Exotic nuclei as a key to understanding fundamental forces<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">The hypertriton is the lightest known hypernucleus. It is an artificially produced hydrogen isotope that, in addition to a proton and a neutron, contains a so-called Lambda hyperon. Although hypernuclei exist for only a few hundred trillionths of a second, they provide unique insights into the strong interaction \u2013 the fundamental force that binds atomic nuclei and underlies the structure of matter in the universe. The hypertriton plays a key role in this context: consisting of only three particles, it is ideally suited for precise tests of theoretical models of the hyperon-nucleon interaction.   <\/p>\n\n\n\n<p class=\"has-big-font-size\">\u201cPrecisely because the hypertriton has such a simple structure, its properties are highly sensitive to the underlying nuclear forces,\u201d explained Prof. Dr. Patrick Achenbach from the Institute for Nuclear Physics at JGU. \u201cOur new measurement clearly shows that this interaction is stronger than long assumed \u2013 an important step toward resolving a puzzle that has persisted for many years.\u201d <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Mainz infrastructure as a driving force in hypernuclear research<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">To address these open questions in a targeted manner, a comprehensive hypernuclear research program has been carried out at MAMI. At its core is a high-resolution three-spectrometer setup, complemented by a fourth spectrometer developed specifically for hypernuclear experiments. This unique combination enables a level of measurement precision that sets international benchmarks.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Earlier experiments at MAMI had already shown that the masses of hyperhydrogen-4 and hyperhelium-4 differ unexpectedly strongly \u2013 an indication of nuclear forces that are not yet fully understood. For the 2022 performed and newly published measurement of the hypertriton, the experimental setup was further optimized, including the use of a newly developed lithium target, that is hit by the electron beam. It has a very unusual long and thin geometry to provide minimum energy losses for the outgoing particles in direction of the high-resolution spectrometers.<br>In this experiment, the energy of the pion produced in the decay of the hypertriton was determined with high precision. This measurement is the crucial factor that allows the binding energy of the hypernucleus to be determined accurately. By directly comparing with the decay of the already very precisely measured hyperhydrogen-4, the experiment could be calibrated with exceptional precision. The data analysis was carried out in close collaboration with Japanese partners, in particular within the framework of the doctoral research of Dr. Ryoko Kino from Tohoku University, who has received multiple awards for her work.      <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Classification of the results and international relevance<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">The new study ranks among the leading results of major international experiments such as ALICE at CERN (Geneva, Switzerland) and STAR at the RHIC accelerator (Long Island, USA). The measured binding energy lies above values reported in some earlier emulsion and heavy-ion experiments, but is in good agreement with the most recent STAR data. This points to a stronger interaction between the Lambda hyperon and the remaining hydrogen nucleus than previously assumed.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">The results place new constraints on theoretical models of the strong interaction and also influence discussions of exotic systems such as a hypothetical Lambda-neutron-neutron nucleus. At the same time, they make a significant contribution to resolving the long-standing \u201chypertriton puzzle,\u201d which arose from contradictory earlier measurements. <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>The puzzle of hyperhydrogen<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">The visible universe consists predominantly of hydrogen, the lightest and simplest element in the periodic table. The nuclei of stable hydrogen atoms contain either a single proton or a proton-neutron pair. If, instead of an additional neutron, an exotic nuclear constituent such as a hyperon is added, so-called hyperhydrogen nuclei are formed \u2013 fascinating, short-lived systems that are still not fully understood.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">The unique infrastructure at MAMI has enabled major advances in the study of these systems and provides new impulses for understanding the fundamental forces in atomic nuclei. This includes the hypernuclear database hypernuclei.kph.uni-mainz.de, operated by the Mainz research group, which serves worldwide as a reference for comparing hypernuclear measurements.Die einzigartige Infrastruktur an MAMI hat entscheidende Fortschritte im Studium dieser Systeme erm\u00f6glicht und liefert neue Impulse f\u00fcr das Verst\u00e4ndnis der fundamentalen Kr\u00e4fte in Atomkernen. Dazu tr\u00e4gt auch die von der Mainzer Arbeitsgruppe betriebene Hyperkern-Datenbank hypernuclei.kph.uni-mainz.de bei, die weltweit als Referenz f\u00fcr den Vergleich von Hyperkernmessungen dient. <\/p>\n\n\n\n<p class=\"has-big-font-size\">The current study was funded by the German Research Foundation (DFG) within the framework of the project \u201cPrecision measurement of light hypernuclei masses.\u201d<\/p>\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%\">\n<p class=\"has-big-font-size\"><strong>Publication<\/strong><br>Ryoko Kino, Sho Nagao, Patrick Achenbach et al., Precise Measurement of the \u039b-Binding-Energy Difference between and via Decay-Pion Spectroscopy at MAMI, <em>Physical Review Letters<\/em> 136, 152301, 17 April 2026,<br>DOI: 10.1103\/19gd-jqw2<br><a href=\"https:\/\/journals.aps.org\/prl\/abstract\/10.1103\/19gd-jqw2\">https:\/\/journals.aps.org\/prl\/abstract\/10.1103\/19gd-jqw2<\/a><\/p>\n\n\n\n<div style=\"height:50px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-scaled.jpg&quot;,\n        &quot;id&quot;: 23300,\n        &quot;description&quot;: &quot;Experimenteller Aufbau in der A1-Spektrometerhalle: die Drei-Spektrometer-Anlage (SpekA, B - hier nicht sichtbar - und C), erg\\u00e4nzt um ein speziell f\\u00fcr Hyperkernexperimente entwickeltes viertes Spektrometer (KAOS) | \\u00a9 A1-Kollaboration&quot;,\n        &quot;title&quot;: &quot;Experimenteller Aufbau mit KAOS-Spektrometer in der A1-Spektrometerhalle (photo\\\/\\u00a9: A1 Kollaboration)&quot;,\n        &quot;width&quot;: 2560,\n        &quot;height&quot;: 1440,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-scaled.jpg 2560w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-300x169.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-1024x576.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-768x432.jpg 768w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-1536x864.jpg 1536w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb08\\\/wp-content\\\/uploads\\\/sites\\\/89\\\/2026\\\/01\\\/08_kernphysik_kaos-spek-2048x1152.jpg 2048w&quot;\n    },\n    &quot;caption&quot;: &quot;The three-spectrometer setup (SpekA, SpekB \\u2013 not visible here \\u2013 and SpekC) with the additional fourth spectrometer KAOS designed for hypernuclear experiments (photo\\\/\\u00a9: A1 Collaboration)&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\n<div style=\"height:50px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;h3&quot;,\n        &quot;tag&quot;: &quot;h2.h3&quot;\n    },\n    &quot;heading&quot;: &quot;Related Links&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-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;A1 Collaboration&quot;,\n    &quot;styling&quot;: &quot;line&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/wwwa1.kph.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;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-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Mainz Microtron (MAMI)&quot;,\n    &quot;styling&quot;: &quot;line&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.kernphysik.uni-mainz.de\\\/en\\\/mami-accelerator-experiments\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&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-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Chart of Hypernuclides&quot;,\n    &quot;styling&quot;: &quot;line&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/hypernuclei.kph.uni-mainz.de\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;,\n        &quot;opensInNewTab&quot;: true\n    },\n    &quot;align&quot;: &quot;left&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-buttonitem react-props=\"{\n    &quot;text&quot;: &quot;Institute of Nuclear Physics&quot;,\n    &quot;styling&quot;: &quot;line&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/www.kernphysik.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;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\n<div style=\"height:50px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;h3&quot;,\n        &quot;tag&quot;: &quot;h2.h3&quot;\n    },\n    &quot;heading&quot;: &quot;Read more&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-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;Press Release \\u201cNew method to produce an extremely heavy hydrogen isotope at the Mainz Microtron accelerator MAMI\\u201d (30 April 2025)&quot;,\n    &quot;styling&quot;: &quot;line&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/press.uni-mainz.de\\\/new-method-to-produce-an-extremely-heavy-hydrogen-isotope-at-the-mainz-microtron-accelerator-mami\\\/&quot;,\n        &quot;linkTarget&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;left&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\n<div style=\"height:50px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n<jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;Prof. Dr. Patrick Achenbach&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Institute of Nuclear Physics&lt;br&gt;Johannes Gutenberg University Mainz&lt;br&gt;55099 Mainz&lt;br&gt;&quot;,\n    &quot;uuid&quot;: &quot;1776450753934&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;phone-solid&quot;,\n    &quot;title&quot;: &quot;+49 6131 39 25777&quot;,\n    &quot;uuid&quot;: &quot;1776450769954&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;envelope-solid&quot;,\n    &quot;title&quot;: &quot;achenbach@uni-mainz.de&quot;,\n    &quot;uuid&quot;: &quot;1776450804683&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;https:\\\/\\\/www.kernphysik.uni-mainz.de&quot;,\n    &quot;uuid&quot;: &quot;1776450821338&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 style=\"height:50px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n    <div style=\"display: none\">\n        \n    <\/div>","protected":false},"excerpt":{"rendered":"<p>International research team achieves most precise measurement of hypertriton binding energy to date \/ New insights into the strong nuclear forces that hold matter together An international research team of the A1 Collaboration at the Mainz Microtron (MAMI) of Johannes Gutenberg University Mainz (JGU) has succeeded in determining the binding energy of the hypertriton with &hellip; <a href=\"https:\/\/www.fb08.uni-mainz.de\/en\/2026\/04\/20\/precision-measurement-at-the-mainz-microtron-mami-hypertriton-more-strongly-bound-than-previously-assumed\/\">Continued<\/a><\/p>\n","protected":false},"author":281,"featured_media":23303,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[153,150],"tags":[],"class_list":["post-25543","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-press","category-press-release"],"primary_category":{"id":153,"name":"Press","slug":"press","parent":0,"breadcrumb":"Press"},"media":{},"image":{"url":"https:\/\/cms.zdv.uni-mainz.de\/fb08\/wp-content\/uploads\/sites\/89\/2026\/01\/08_kernphysik_kaos-spek-scaled.jpg","credit":""},"index":"20.04.2026","assigned_date":"","external_link":"","_links":{"self":[{"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/posts\/25543","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/users\/281"}],"replies":[{"embeddable":true,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/comments?post=25543"}],"version-history":[{"count":13,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/posts\/25543\/revisions"}],"predecessor-version":[{"id":25599,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/posts\/25543\/revisions\/25599"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/media\/23303"}],"wp:attachment":[{"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/media?parent=25543"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/categories?post=25543"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.fb08.uni-mainz.de\/en\/wp-json\/wp\/v2\/tags?post=25543"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}