Importance of cosmic ray propagation on sub-GeV dark matter constraints
Abstract
We study sub-GeV dark matter (DM) particles that may annihilate or decay into SM particles producing an exotic injection component in the Milky Way that leaves an imprint in both photon and cosmic ray (CR) fluxes. Specifically, the DM particles may annihilate or decay into , or and may radiate photons through their products. The resulting products can be directly observed in probes such as {\sc Voyager 1}. Alternatively, the products may produce bremsstrahlung radiation and upscatter the low-energy galactic photon fields via the inverse Compton process generating a broad emission from -ray to -ray energies observable in experiments such as {\sc Xmm-Newton}. We find that we get a significant improvement in the DM annihilation and decay constraints from {\sc Xmm-Newton} (excluding thermally averaged cross sections of cm s cm s and decay lifetimes of respectively) by including best fit CR propagation and diffusion parameters. This yields the strongest astrophysical constraints for this mass range of DM of 1 MeV to a few GeV and even surpasses cosmological bounds across a wide range of masses as well.
Keywords
Cite
@article{arxiv.2311.04979,
title = {Importance of cosmic ray propagation on sub-GeV dark matter constraints},
author = {Pedro De la Torre Luque and Shyam Balaji and Jordan Koechler},
journal= {arXiv preprint arXiv:2311.04979},
year = {2024}
}
Comments
14 figures, 1 table, 27 pages. A customized version of the DRAGON2 code is released along with this paper