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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Detecting boosted dark matter from the Sun with large volume neutrino detectors
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Detecting boosted dark matter from the Sun with large volume neutrino detectors

机译:使用大体积中微子探测器探测来自太阳的增强暗物质

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摘要

We study novel scenarios where thermal dark matter (DM) can be efficiently captured in the Sun and annihilate into boosted dark matter. In models with semi-annihilating DM, where DM has a non-minimal stabilization symmetry, or in models with a multicomponent DM sector, annihilations of DM can give rise to stable dark sector particles with moderate Lorentz boosts. We investigate both of these possibilities, presenting concrete models as proofs of concept. Both scenarios can yield viable thermal relic DM with masses O(1)-O(100) GeV. Taking advantage of the energetic proton recoils that arise when the boosted DM scatters off matter, we propose a detection strategy which uses large volume terrestrial detectors, such as those designed to detect neutrinos or proton decays. In particular, we propose a search for proton tracks pointing towards the Sun. We focus on signals at Cherenkov-radiation-based detectors such as Super-Kamiokande (SK) and its upgrade Hyper-Kamiokande (HK). We find that with spin-dependent scattering as the dominant DM-nucleus interaction at low energies, boosted DM can leave detectable signals at SK or HK, with sensitivity comparable to DM direct detection experiments while being consistent with current constraints. Our study provides a new search path for DM sectors with non-minimal structure.
机译:我们研究了新颖的场景,可以有效地在太阳下捕获热暗物质(DM),并将其消灭为增强的暗物质。在DM具有非最小稳定对称性的半-灭DM模型中,或在具有多成分DM扇形的模型中,DM an灭会产生稳定的暗区粒子,并具有中等的Lorentz增强。我们研究了这两种可能性,并提出了具体的模型作为概念证明。两种情况都可以产生质量为O(1)-O(100)GeV的可行的热文物DM。利用增强的DM散布物质时产生的高能质子反冲,我们提出了一种检测策略,该策略使用大体积的地面探测器,例如设计用于探测中微子或质子衰变的探测器。特别是,我们建议搜索指向太阳的质子轨道。我们专注于基于Cherenkov辐射的探测器的信号,例如Super-Kamiokande(SK)及其升级的Hyper-Kamiokande(HK)。我们发现,以自旋相关的散射作为低能量下主要的DM-核相互作用,增强的DM可以在SK或HK处留下可检测的信号,其灵敏度与DM直接检测实验相当,同时与电流限制一致。我们的研究为具有非最小结构的DM部门提供了一条新的搜索路径。

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