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A Tentative Gamma-Ray Line from Dark Matter Annihilation at the Fermi Large Area Telescope

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arxiv 1204.2797 v2 pith:2SEV4LLJ submitted 2012-04-12 hep-ph astro-ph.COastro-ph.HE

A Tentative Gamma-Ray Line from Dark Matter Annihilation at the Fermi Large Area Telescope

classification hep-ph astro-ph.COastro-ph.HE
keywords darkmatterannihilationdatagamma-raylinesigmaarea
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The observation of a gamma-ray line in the cosmic-ray fluxes would be a smoking-gun signature for dark matter annihilation or decay in the Universe. We present an improved search for such signatures in the data of the Fermi Large Area Telescope (LAT), concentrating on energies between 20 and 300 GeV. Besides updating to 43 months of data, we use a new data-driven technique to select optimized target regions depending on the profile of the Galactic dark matter halo. In regions close to the Galactic center, we find a 4.6 sigma indication for a gamma-ray line at 130 GeV. When taking into account the look-elsewhere effect the significance of the observed excess is 3.2 sigma. If interpreted in terms of dark matter particles annihilating into a photon pair, the observations imply a dark matter mass of 129.8\pm2.4^{+7}_{-13} GeV and a partial annihilation cross-section of <\sigma v> = 1.27\pm0.32^{+0.18}_{-0.28} x 10^-27 cm^3 s^-1 when using the Einasto dark matter profile. The evidence for the signal is based on about 50 photons; it will take a few years of additional data to clarify its existence.

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Cited by 2 Pith papers

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    Tentative double Gaussian excess at 1.59 GeV (2.6σ) and 11.15 GeV (3.7σ) in Fermi-LAT spectrum of blazar 4FGL J0604.9-0000, combined TS ≃ 27 (~4.3σ local).

  2. Unidentified Gamma-ray Sources as Targets for Indirect Dark Matter Detection with the Fermi-Large Area Telescope

    astro-ph.HE 2019-06 unverdicted novelty 5.0

    Filtering unidentified Fermi sources and comparing to repopulated VL-II simulations yields upper limits of 4e-26 cm3/s (10 GeV) and 5e-25 cm3/s (100 GeV) on tau-pair annihilation.