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Spontaneous dark-matter mass generation along cosmological attractors in string theory

<!--HTML-->I will talk about a new scenario for generating a relic density of non-relativistic dark matter in the framework of heterotic string theory with spontaneously broken supersymmetry and at finite temperature. In this scenario, contrary to the standard thermal freeze-out process, dark-...

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Autor principal: Coudarchet, Thibaut
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2680868
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author Coudarchet, Thibaut
author_facet Coudarchet, Thibaut
author_sort Coudarchet, Thibaut
collection CERN
description <!--HTML-->I will talk about a new scenario for generating a relic density of non-relativistic dark matter in the framework of heterotic string theory with spontaneously broken supersymmetry and at finite temperature. In this scenario, contrary to the standard thermal freeze-out process, dark-matter particles are produced while they are still relativistic and then decouple from the thermal bath because of a sudden increase of their mass above the universe temperature. The mass increase is sourced by the destabilization of a modulus triggered when the temperature of the universe drops below the supersymmetry breaking scale. This phase transition is enforced to take place in certain models thanks to a cosmological attractor mechanism.
id cern-2680868
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26808682022-11-02T22:21:41Zhttp://cds.cern.ch/record/2680868engCoudarchet, ThibautSpontaneous dark-matter mass generation along cosmological attractors in string theoryString Phenomenology 2019Conferences & Workshops<!--HTML-->I will talk about a new scenario for generating a relic density of non-relativistic dark matter in the framework of heterotic string theory with spontaneously broken supersymmetry and at finite temperature. In this scenario, contrary to the standard thermal freeze-out process, dark-matter particles are produced while they are still relativistic and then decouple from the thermal bath because of a sudden increase of their mass above the universe temperature. The mass increase is sourced by the destabilization of a modulus triggered when the temperature of the universe drops below the supersymmetry breaking scale. This phase transition is enforced to take place in certain models thanks to a cosmological attractor mechanism.oai:cds.cern.ch:26808682019
spellingShingle Conferences & Workshops
Coudarchet, Thibaut
Spontaneous dark-matter mass generation along cosmological attractors in string theory
title Spontaneous dark-matter mass generation along cosmological attractors in string theory
title_full Spontaneous dark-matter mass generation along cosmological attractors in string theory
title_fullStr Spontaneous dark-matter mass generation along cosmological attractors in string theory
title_full_unstemmed Spontaneous dark-matter mass generation along cosmological attractors in string theory
title_short Spontaneous dark-matter mass generation along cosmological attractors in string theory
title_sort spontaneous dark-matter mass generation along cosmological attractors in string theory
topic Conferences & Workshops
url http://cds.cern.ch/record/2680868
work_keys_str_mv AT coudarchetthibaut spontaneousdarkmattermassgenerationalongcosmologicalattractorsinstringtheory
AT coudarchetthibaut stringphenomenology2019