PaperPanorama

arXiv:2503.20911·v1·High Energy Physics — Phenomenology

From SIMP miracles to WIMP dead ends: navigating the freeze out of MeV-mass dark matter

Xiaoyong Chu🇨🇳 · Josef Pradler🇦🇹

PDFarXivINSPIREDOI

Abstract

We summarize here our studies \cite{Chu:2022xuh,Chu:2023jyb,Chu:2024rrv} on two distinct scenarios for MeV-mass thermal dark matter freeze-out. First, we determine the minimal viable mass for dark matter below tens of MeV, considering annihilation into Standard Model particles, including photons, electrons, and neutrinos. Using a full three-sector abundance calculation, we track heat transfer between sectors and provide accurate thermal annihilation cross sections, particularly for velocity-dependent cases. The results identify fine-tuned regions where neutrino final states permit otherwise excluded p-wave annihilation scenarios. Second, we examine dark matter freeze-out in strongly interacting theories, where the relic abundance can be regulated not only through standard annihilation but also via bound-state formation , enabling effective two-body processes and/or . Together, these studies highlight complementary pathways to thermal MeV-mass dark matter.

Comments: Contribution to the Proceedings of the 9th Symposium on Prospects in the Physics of Discrete Symmetries (DISCRETE2024)