Seeking dark matter with $\gamma$-ray attenuation
Abstract
The flux of high-energy astrophysical rays is attenuated by the production of electron-positron pairs from scattering off of extragalactic background light (EBL). We use the most up-to-date information on galaxy populations to compute their contributions to the pair-production optical depth. We find that the optical depth inferred from -ray measurements exceeds that expected from galaxies at the level. If the excess is modeled as a frequency-independent re-scaling of the standard contribution to the EBL from galaxies, then an excess (an overall increase of the EBL) over the null hypothesis of no excess at the level. If the frequency dependence of the excess is instead modeled as a two-photon decay of a dark-matter axion, then the excess is favored over the null hypothesis at the confidence level. While we find no evidence for a dark-matter signal, the analysis sets the strongest current bounds on the photon-axion coupling over the eV mass range. This work highlights the sensitivity of -ray optical depth measurements to ALPs, which is expected to improve with new observatories and better EBL determinations from future observations.
Cite
@article{arxiv.2208.13794,
title = {Seeking dark matter with $\gamma$-ray attenuation},
author = {José Luis Bernal and Andrea Caputo and Gabriela Sato-Polito and Jordan Mirocha and Marc Kamionkowski},
journal= {arXiv preprint arXiv:2208.13794},
year = {2023}
}
Comments
5 pages + 3 pages of appendix (+5 pages of references), 6 figures. Discussions and figures slightly modified, an appendix to discuss the likelihood added, conclusions unchanged. Matches the published version