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Astrophysical probes of inelastic dark matter with a light mediator

机译:光介质的无弹性暗物质的天体物理探针

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We consider an inelastic dark matter model, in which a fermion is charged under a broken U(1) gauge symmetry, and introduce a tiny Majorana mass term to split the fermion into two states with the light one being a dark matter candidate. If the gauge boson is light, it can mediate both elastic and inelastic dark matter self-interactions in dark halos, leading to observational consequences. Using a numerical technique based on partial wave analysis, we accurately calculate the elastic and inelastic self-scattering cross sections. We assume a thermal freeze-out scenario and fix the gauge coupling constant using the relic density constraint. Then, we focus on six benchmark masses of dark matter, covering a wide range from 10?MeV to 160?GeV and map parameter regions where the elastic scattering cross section per unit mass is within 1 ? ? cm 2 / g ? 5 ? ? cm 2 / g , favored to solve small-scale issues of cold dark matter. If the heavy state can decay to the light state and a massless species, the inelastic up-scattering process can cool the halo and lead to core collapse. Taking galaxies with evidence of dark matter density cores, we further derive constraints on the parameter space. For dark matter masses below 10?GeV, the mass splitting must be large enough to forbid up scattering in the dwarf halo for evading the core-collapse constraint; while for higher masses, the up-scattering process can still be allowed. Our results show astrophysical observations can provide powerful tests for dark matter models with large elastic and inelastic self-interactions.
机译:我们考虑一种非弹性暗物质模型,其中码头在破碎的U(1)尺对称下充电,并引入一个微小的Makeana质量术语,以便用一个是暗物质候选者将食物分成两个状态。如果测量杆是灯光,它可以在暗光环中介导弹性和无弹性的暗物质自相互作用,导致观察后果。使用基于部分波分析的数值技术,我们精确地计算弹性和无弹性自散截面。我们假设热冻结场景,并使用遗物密度约束固定仪表耦合常数。然后,我们专注于六个基准暗物质的暗物质,覆盖范围宽范围为10?MEV至160?GEV和地图参数区域,其中每单位质量的弹性散射截面在1内?还cm 2 / g? 5?还CM 2 / G,有利于解决冷暗物质的小规模问题。如果重状态可以衰减到光状态和无麻环,则无弹性上散射过程可以冷却卤素并导致核心塌陷。使用暗物质密度核心的证据采取星系,我们进一步推导了参数空间的约束。对于低于10?GEV的暗物质质量,质量分裂必须足够大,以禁止矮人光环散射,以逃避核心塌陷的约束;虽然对于较高的质量,但仍然可以允许起动散射过程。我们的结果表明,天体物理观测可以为具有大的弹性和无弹性自相互作用的暗物质模型提供强大的测试。

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