论文标题

使用Hyper-Kamiokande在银河中心搜索子GEV暗物质

Searching for Sub-GeV Dark Matter in the Galactic Centre using Hyper-Kamiokande

论文作者

Bell, Nicole F., Dolan, Matthew J., Robles, Sandra

论文摘要

通过其歼灭产物对暗物质的间接检测是一种以弱相互作用的巨大颗粒(WIMP)形式寻找暗物质的关键技术。强烈的限制存在于wim灭对高度可见的标准模型最终状态,例如光子或带电颗粒等高度可见的标准模型。在S波歼灭的情况下,这通常会消除质量以下的暗物质的热液体横截面,低于$ \ cal {o} $(10)GEV。但是,这种限制通常忽略了暗物质可能会歼灭假定的无形或难以检测的最终状态,例如中微子。由于中微子相互作用横截面较弱,这是很难探测的范式。考虑到银河光环中的暗物质歼灭,我们使用Hyper-Kamiokande(Hyperk)中微子实验研究了间接检测的前景,对于1 GEV以下的质量的暗物质。我们对HYPERK检测器进行了专门的模拟,我们对类似的Super-Kamiokande实验和HyperK物理学预测的结果进行了基准测试。我们提供了歼灭横截面的预测,可以通过HyperK探测到and灭Muon或中微子最终状态的预测,并讨论与暗物质光环概况相关的不确定性。对于中微子的最终状态,我们发现HyperK对暗物质的热歼灭横截面敏感,质量约为20 MeV,假设NFW Halo曲线也是如此。我们还讨论了中子标签的影响,以及改善低质量覆盖范围的前景。

Indirect detection of dark matter via its annihilation products is a key technique in the search for dark matter in the form of weakly interacting massive particles (WIMPs). Strong constraints exist on the annihilation of WIMPs to highly visible Standard Model final states such as photons or charged particles. In the case of s-wave annihilation, this typically eliminates thermal relic cross sections for dark matter of mass below $\cal{O}$(10) GeV. However, such limits typically neglect the possibility that dark matter may annihilate to assumed invisible or hard-to-detect final states, such as neutrinos. This is a difficult paradigm to probe due to the weak neutrino interaction cross section. Considering dark matter annihilation in the Galactic halo, we study the prospects for indirect detection using the Hyper-Kamiokande (HyperK) neutrino experiment, for dark matter of mass below 1 GeV. We undertake a dedicated simulation of the HyperK detector, which we benchmark against results from the similar Super-Kamiokande experiment and HyperK physics projections. We provide projections for the annihilation cross-sections that can be probed by HyperK for annihilation to muon or neutrino final states, and discuss uncertainties associated with the dark matter halo profile. For neutrino final states, we find that HyperK is sensitive to thermal annihilation cross-sections for dark matter with mass around 20 MeV, assuming an NFW halo profile. We also discuss the effects of neutron tagging, and prospects for improving the reach at low mass.

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