Enhanced Dark Matter Abundance in First-Order Phase Transitions
Abstract
We propose a novel scenario to obtain the correct relic abundance for thermally under-produced dark matter. This scenario utilizes a strongly first-order phase transition at temperature that gives rise to dark matter mass . Freeze-out in the broken phase can yield the desired abundance in the entire region currently allowed by observational bounds and theoretical constraints for . We show that the accompanying gravitational waves are strong enough to be detected by many upcoming and proposed experiments. This, in tandem with dark matter indirect searches, provides a multi-messenger probe of such models. Positive signals in the future can help reconstruct the potential governing the phase transition and shed light on an underlying particle physics realization.
Cite
@article{arxiv.2409.02179,
title = {Enhanced Dark Matter Abundance in First-Order Phase Transitions},
author = {Rouzbeh Allahverdi and Cash Hauptmann and Peisi Huang},
journal= {arXiv preprint arXiv:2409.02179},
year = {2024}
}
Comments
8+4 pages, 4+1 figures; changes to figures 3 and 4, to be published in PRD