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Fermi Bubbles under Dark Matter Scrutiny. Part I: Astrophysical Analysis

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arxiv 1307.6862 v2 pith:3SASNJUL submitted 2013-07-25 hep-ph astro-ph.CO

classification hep-phastro-ph.CO
keywords fermibubblescircdarkmatteranalysisannihilationenergy
verification ladder T0 review T1 audit T2 compute T3 formal
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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, $|b|=20^{\circ}-50^{\circ}$, 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, $|b|=10^{\circ}-20^{\circ}$, the presence of a bump at $E_{\gamma}\sim 1-4$ GeV, reveals the existence of an extra component compatible with Dark Matter annihilation. Our best-fit candidate corresponds to annihilation into $b\bar{b}$ with mass $M_{\rm DM}= 61.8^{+6.9}_{-4.9}$ GeV and cross section $<\sigma v> = 3.30^{+0.69}_{-0.49}\times 10^{-26}$ cm$^{3}$s$^{-1}$. 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.

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Cited by 2 Pith papers

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  1. Characterizing the Nature of the Unresolved Point Sources in the Galactic Center

    astro-ph.CO 2019-08 conditional novelty 6.0 of 10

    The failure of NPTF to recover injected dark matter signals can be a natural consequence of unresolved point sources and diffuse background mismodeling, so it does not by itself invalidate the NPTF point-source interp...

  2. Detection of polarized Fermi-bubble synchrotron and dust emission

    astro-ph.HE 2024-01 unverdicted novelty 5.0 of 10

    Reports ~20% projected polarization in synchrotron and thermal dust emission from Fermi bubbles, with fields parallel to edges, and attributes larger lobes to an older supermassive black hole outburst.

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