Solar $\gamma$-rays as a Complementary Probe of Dark Matter
Abstract
We show that observations of solar -rays offer a novel probe of dark matter in scenarios where interactions with the visible sector proceed via a long-lived mediator. As a proof of principle, we demonstrate that there exists a class of models which yield solar -ray fluxes observable with the next generation of -ray telescopes, while being allowed by a variety of current experimental constraints. The parameter space allowed by big bang nucleosynthesis and beam dump experiments naturally leads to mediator lifetimes sufficient to produce observable solar -ray signals. The model allows for solar -ray fluxes up to orders of magnitude larger compared to dwarf spheroidal galaxies, without reaching equilibrium between dark matter annihilation and capture rate. Our results suggest that solar -ray observations are complementary, and in some cases superior, to existing and future dark matter detection efforts.
Cite
@article{arxiv.1703.08087,
title = {Solar $\gamma$-rays as a Complementary Probe of Dark Matter},
author = {Chiara Arina and Mihailo Backović and Jan Heisig and Michele Lucente},
journal= {arXiv preprint arXiv:1703.08087},
year = {2017}
}
Comments
15 pages + references, 7 figures, v3: Fermi-LAT and HERD sensitivity corrected, minor presentational improvements, matches journal version