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Boosted self-interacting dark matter in a multi-component dark matter model

机译:在多组分的暗物质模型中提升了自相互作用的暗物质

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摘要

In models of multi-component dark matter, the lighter component of dark matter can be boosted by annihilations of the heavier state if mass splitting is large enough. Such relativistic dark matter can be detectable via large neutrino detectors such as Super-Kamiokande and IceCube. Moreover, if the process is inelastic scattering and decay length of the produced particle is short enough, another signature coming from the decay can also be detectable. In this paper, we construct a simple two-component dark matter model with a hidden U(1)D gauge symmetry where the lighter component of dark matter has a potential to improve the so-called small scale structure problems with large self-interacting cross section. We estimate number of multi-Cherenkov ring events due to both of the boosted dark matter and subsequent decay of the particle produced by inelastic scattering at Hyper-Kamiokande future experiment. Some relevant constraints, such as dark matter direct detection and cosmological observations, are also taken into account. The numerical analysis shows that some parameter space which can induce large self-interacting cross section can give a few multi-Cherenkov ring events per year at Hyper-Kamiokande.
机译:在多组分暗物质的模型中,如果质量分裂足够大,则可以通过较重状态的湮灭来提高暗物质的较轻部件。这种相对论的暗物质可以通过大型中微子探测器(如超级Kamiokande和Icecube)检测。此外,如果该过程是非弹性散射,并且产生的粒子的衰减长度足够短,则来自衰变的另一个签名也可以是可检测的。在本文中,我们用隐藏的U(1)D仪表对称构建一个简单的双组分暗物质模型,其中暗物质的较轻部件具有改善具有大自交换十字的所谓的小规模结构问题部分。由于在超级Kamiokande未来实验中,由于在超级Kamiokande未来实验中产生的粒子散射的粒度和随后的颗粒衰减,我们估计多Cherenkov环事件的数量。还考虑了一些相关的约束,例如暗物质直接检测和宇宙学观察。数值分析表明,一些可以诱导大型自交换截面的参数空间可以每年在Hyper-Kamiokande提供几个多Cherenkov环事件。

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