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Dark Matter's secret liaisons: phenomenology of a dark U(1) sector with bound states

机译:暗物质的秘密联络:带有界定的黑暗U(1)个行业的现象学

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摘要

Dark matter (DM) charged under a dark U(1) force appears in many extensions of the Standard Model, and has been invoked to explain anomalies in cosmic-ray data, as well as a self-interacting DM candidate. In this paper, we perform a comprehensive phenomenological analysis of such a model, assuming that the DM abundance arises from the thermal freeze-out of the dark interactions. We include, for the first time, bound-state effects both in the DM production and in the indirect detection signals, and quantify their importance for Fermi, AMS, and CMB experiments. We find that DM in the mass range 1 GeV to 100 TeV, annihilating into dark photons of MeV to GeV mass, is in conflict with observations. Instead, DM annihilation into heavier dark photons is viable. We point out that the late decays of multi-GeV dark photons can produce significant entropy and thus dilute the DM density. This can lower considerably the dark coupling needed to obtain the DM abundance, and in turn relax the existing constraints.
机译:在暗u(1)的力下充电的暗物质(DM)出现在标准模型的许多扩展中,并已被调用以解释宇宙射线数据中的异常,以及自交互DM候选者。在本文中,我们对这种模型进行了全面的现象学分析,假设DM丰度从黑暗相互作用的热冻结出来。我们在第一次包括DM生产和间接检测信号中的第一次绑定状态效应,并量化了对FERMI,AMS和CMB实验的重要性。我们发现质量范围内的DM 1 GEV到100 TEV,湮灭到MEV的深色光子到GEV MASS,与观察发生冲突。相反,DM湮灭成较重的暗光子是可行的。我们指出,多GEV深光子的后期衰减可以产生显着的熵,从而稀释DM密度。这可以很大程度上降低获得DM丰度所需的黑暗耦合,并且反过来放松现有的约束。

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