Light Thermal Dark Matter Beyond $p$-Wave Annihilation in Minimal Higgs Portal Model
Abstract
This study explores a minimal renormalizable dark matter (DM) model, incorporating a sub-GeV Majorana DM and a singlet scalar particle . Using scalar and pseudo-scalar interactions (couplings and ), we investigate implications for DM detection, considering -wave, -wave, and combined (+ wave) contributions in DM annihilation cross-section, as well as loop-correction contributions to DM-nucleon elastic scattering. Identifying a broad parameter space () within the allowed region, we explore scenarios (, , and ). We find that (i) a non-zero pseudo-scalar coupling alleviates direct detection constraints as a comparison with the previous pure scalar coupling case; (ii) CMB observations set stringent limits on pseudo-scalar interaction dominant cases, making -wave annihilation viable only for ; (iii) the preferred -resonance region can be tested in the future indirect detection experiments, such as e-ASTROGAM.
Keywords
Cite
@article{arxiv.2403.02721,
title = {Light Thermal Dark Matter Beyond $p$-Wave Annihilation in Minimal Higgs Portal Model},
author = {Yu-Tong Chen and Shigeki Matsumoto and Tian-Peng Tang and Yue-Lin Sming Tsai and Lei Wu},
journal= {arXiv preprint arXiv:2403.02721},
year = {2024}
}
Comments
35 pages, 4 figures