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Impact of uncertainties in the halo velocity profile on direct detection of sub-GeV dark matter

机译:晕圈速度概况中的不确定性对直接检测亚gev暗物质的影响

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A bstract We use the state-of-the-art high-resolution cosmological simulations by IllustrisTNG to derive the velocity distribution and local density of dark matter in galaxies like our Milky Way and find a substantial spread in both quantities. Next we use our findings to examine the sensitivity to the dark matter velocity profile of underground searches using electron scattering in germanium and silicon targets. We find that sub-GeV dark matter search is strongly affected by these uncertainties, unlike nuclear recoil searches for heavier dark matter, especially in multiple electron-hole modes, for which the sensitivity to the scattering cross-section is also weaker. Therefore, by improving the sensitivity to lower ionization thresholds not only projected sensitivities will be boosted but also the dependence on the astrophysical uncertainties will become significantly reduced.
机译:Bstract我们通过IllustristG使用了最先进的高分辨率宇宙学模拟,以导出银河系中的星系中暗物质的速度分布和局部密度,并在两种数量中发现大量蔓延。 接下来,我们使用我们的研究结果来使用锗和硅靶标的电子散射来检查地下搜索的暗质量速度曲线谱的敏感性。 我们发现亚gev暗物质搜索受到这些不确定性的强烈影响,与核反冲搜索较重的暗物质,特别是在多个电子孔模式中,对散射横截面的敏感性也较弱。 因此,通过提高降低电离阈值的敏感性,不仅将会提高预测的敏感性,而且对天体物理不确定性的依赖性将大大降低。

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