arXiv Analytics

Sign in

arXiv:2201.02317 [hep-ph]AbstractReferencesReviewsResources

Gravitational wave background from non-Abelian reheating after axion-like inflation

P. Klose, M. Laine, S. Procacci

Published 2022-01-07, updated 2022-05-13Version 2

A pseudoscalar inflaton $\varphi$, coupled to the topological charge density $F\tilde{F}$ of a non-Abelian sector, can decay to gauge bosons ($\varphi\to g g $), which may thermalize rapidly. The friction felt by $\varphi$ is then increased by non-Abelian "strong sphalerons", leading to a self-amplifying process that can efficiently heat up the medium. We determine a lower bound for the gravitational wave production rate from such a process, originating via hydrodynamic fluctuations and particle collisions, in terms of a minimal number of parameters. Only a moderate fraction of energy density is converted to gravitational waves, suggesting that non-Abelian models may avoid the overproduction observed in some Abelian cases.

Comments: 18 pages. v2: clarifications added
Journal: JCAP 05 (2022) 021
Categories: hep-ph, astro-ph.CO
Related articles: Most relevant | Search more
arXiv:2210.11710 [hep-ph] (Published 2022-10-21)
Gravitational wave background from vacuum and thermal fluctuations during axion-like inflation
arXiv:2212.13573 [hep-ph] (Published 2022-12-27)
Dark Photon Dark Matter from Cosmic Strings and Gravitational Wave Background
arXiv:2012.13527 [hep-ph] (Published 2020-12-25)
Neutrino masses and gravitational wave background