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Secluded singlet fermionic dark matter driven by the Fermi gamma-ray excess

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arxiv 1601.05089 v3 pith:H3WT5ZX2 submitted 2016-01-19 hep-ph

classification hep-ph
keywords gamma-raydarkfermiexcessmatterpairconstraintsfermionic
verification ladder T0 review T1 audit T2 compute T3 formal
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We examine the possibility that the dark matter (DM) interpretation of the GeV scale Fermi gamma-ray excess at the Galactic Center can be realized in a specific framework - secluded singlet fermionic dark matter model with small mixing between the dark and Standard Model sector. Within this framework it is shown that the DM annihilation into bottom-quark pair, Higgs pair, and new scalar pair can give good fits to the Fermi gamma-ray data. Moreover unavoidable constraints from the antiproton ratio by the PAMELA and AMS-02, the gamma-ray emission from the dwarf spheroidal galaxies by the Fermi-LAT, and the Higgs measurements by the LHC are also considered. Then we found our best-fit parameters for the Fermi gamma-ray excess without conflicting other experimental and cosmological constraints if uncertainties on the DM density profile of the Milky Way Galaxy are taken into account. Successfully surviving parameters are benchmark points for future study on the collider signals.

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  1. Heavy singlet fermionic dark matter with $Z_4$ symmetry

    hep-ph 2026-06 unverdicted novelty 3.0 of 10

    In the Z4-symmetric singlet fermionic DM model with a new scalar, viable heavy-DM parameter space in the secluded regime permits non-negligible Higgs mixing while satisfying relic density and direct detection bounds.

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