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

机译:由费米γ射线过量驱动的僻静单线怪物暗物质

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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 sectors. Within this framework, it is shown that the DM annihilation into a bottom-quark pair, Higgs pair, and new scalar pair, shown to give good fits to the Fermi gamma-ray data in various model independent studies, can be successfully reproduced in our model. Moreover, unavoidable constraints from the antiproton ratio by 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 find 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.
机译:我们研究了GEV级FERMI伽玛射线过量的暗物质(DM)解释在银河系中的多余的可能性,可以在特定的框架僻静的单线晶体暗物质模型中实现,暗和标准模型扇区的小混合。在该框架内,显示DM湮灭进入底夸克对,HIGG对和新的标量对,显示出于各种模型独立研究中的费米伽玛射线数据,可以在我们的过程中成功复制模型。此外,Pamela和AMS-02的不可避免的限制来自帕米拉和AMS-02,由Fermi-LAT的矮球球星系中的γ射线发射,以及LHC的HIGGS测量。然后,如果考虑到银河系的DM密度剖面的不确定性,我们发现Fermi Gamma射线过度的最佳参数对于Fermi Gamma射线过量,而不会互相冲突其他实验和宇宙​​学约束。成功幸存的参数是用于碰撞器信号的未来研究的基准点。

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