Fermi Bubbles under Dark Matter Scrutiny. Part I: Astrophysical Analysis
Abstract
The quest for Dark Matter signals in the gamma-ray sky is one of the most intriguing and exciting challenges in astrophysics. In this paper we perform the analysis of the energy spectrum of the \textit{Fermi bubbles} at different latitudes, making use of the gamma-ray data collected by the Fermi Large Area Telescope. By exploring various setups for the full-sky analysis we achieve stable results in all the analyzed latitudes. At high latitude, , the \textit{Fermi bubbles} energy spectrum can be reproduced by gamma-ray photons generated by inverse Compton scattering processes, assuming the existence of a population of high-energy electrons. At low latitude, , the presence of a bump at GeV, reveals the existence of an extra component compatible with Dark Matter annihilation. Our best-fit candidate corresponds to annihilation into with mass GeV and cross section cms. In addition, using the energy spectrum of the \textit{Fermi bubbles}, we derive new conservative but stringent upper limits on the Dark Matter annihilation cross section.
Keywords
Cite
@article{arxiv.1307.6862,
title = {Fermi Bubbles under Dark Matter Scrutiny. Part I: Astrophysical Analysis},
author = {Wei-Chih Huang and Alfredo Urbano and Wei Xue},
journal= {arXiv preprint arXiv:1307.6862},
year = {2013}
}
Comments
23 pages + 2 appendices, 19 figures; v2: minor changes, various comments added in all the sections