Aspects of Gravitational Portals and Freeze-in during Reheating

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Henrich, Stephen E., Mambrini, Yann, Olive, Keith A.
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866915069355360256
author Henrich, Stephen E.
Mambrini, Yann
Olive, Keith A.
author_facet Henrich, Stephen E.
Mambrini, Yann
Olive, Keith A.
contents We conduct a systematic investigation of freeze-in during reheating while taking care to include both direct and indirect production of dark matter (DM) via gravitational portals and inflaton decay. Direct production of DM can occur via gravitational scattering of the inflaton, while indirect production occurs through scattering in the Standard Model radiation bath. We consider two main contributions to the radiation bath during reheating. The first, which may dominate at the onset of the reheating process, is produced via gravitational scattering of the inflaton. The second (and more standard contribution) comes from inflaton decay. We consider a broad class of DM production rates parameterized as $R_χ \propto T^{n+6}/Λ^{n+2}$, and inflaton potentials with a power-law form $V(ϕ) \propto ϕ^{k}$ about the minimum. We find the relic density produced by freeze-in for each contribution to the Standard Model bath for arbitrary $k$ and $n$, and compare these with the DM density produced gravitationally by inflaton scattering. We find that freeze-in production from the gravitationally-produced radiation bath can exceed that of the conventional decay bath and account for the observed relic density provided that $m_χ > T_{\rm RH}$, with additional $k$- and $n$-dependent constraints. For each freeze-in interaction considered, we also find $m_χ$- and $T_{\rm RH}$-dependent limits on the BSM scale, $Λ$, for which gravitational production will exceed ordinary freeze-in production.
format Preprint
id arxiv_https___arxiv_org_abs_2412_13288
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Aspects of Gravitational Portals and Freeze-in during Reheating
Henrich, Stephen E.
Mambrini, Yann
Olive, Keith A.
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
We conduct a systematic investigation of freeze-in during reheating while taking care to include both direct and indirect production of dark matter (DM) via gravitational portals and inflaton decay. Direct production of DM can occur via gravitational scattering of the inflaton, while indirect production occurs through scattering in the Standard Model radiation bath. We consider two main contributions to the radiation bath during reheating. The first, which may dominate at the onset of the reheating process, is produced via gravitational scattering of the inflaton. The second (and more standard contribution) comes from inflaton decay. We consider a broad class of DM production rates parameterized as $R_χ \propto T^{n+6}/Λ^{n+2}$, and inflaton potentials with a power-law form $V(ϕ) \propto ϕ^{k}$ about the minimum. We find the relic density produced by freeze-in for each contribution to the Standard Model bath for arbitrary $k$ and $n$, and compare these with the DM density produced gravitationally by inflaton scattering. We find that freeze-in production from the gravitationally-produced radiation bath can exceed that of the conventional decay bath and account for the observed relic density provided that $m_χ > T_{\rm RH}$, with additional $k$- and $n$-dependent constraints. For each freeze-in interaction considered, we also find $m_χ$- and $T_{\rm RH}$-dependent limits on the BSM scale, $Λ$, for which gravitational production will exceed ordinary freeze-in production.
title Aspects of Gravitational Portals and Freeze-in during Reheating
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2412.13288