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Dark matter hurricane: Measuring the S1 stream with dark matter detectors

机译:暗物质飓风:用暗物质探测器测量S1流

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The recently discovered S1 stream passes through the Solar neighborhood on a low inclination, counterrotating orbit. The progenitor of S1 is a dwarf galaxy with a total mass comparable to the presentday Fornax dwarf spheroidal, so the stream is expected to have a significant DM component. We compute the effects of the S1 stream on WIMP and axion detectors as a function of the density of its unmeasured dark component. In WIMP detectors the S1 stream supplies more high energy nuclear recoils so will marginally improve DM detection prospects. We find that even if S1 comprises less than 10% of the local density, multiton xenon WIMP detectors can distinguish the S1 stream from the bulk halo in the relatively narrow mass range between 5 and 25 GeV. In directional WIMP detectors such as CYGNUS, S1 increases DM detection prospects more substantially since it enhances the anisotropy of the WIMP signal. Finally, we show that axion haloscopes possess by far the greatest potential sensitivity to the S1 stream if its dark matter component is sufficiently cold. Once the axion mass has been discovered, the distinctive velocity distribution of S1 can easily be extracted from the axion power spectrum.
机译:最近发现的S1流通过太阳能邻域,在低倾斜度,对抗轨道上。 S1的祖母是矮星,其总质量与现时ForNax矮球型相当,因此预期流具有重要的DM组分。我们根据其未测量的黑暗部件的密度来计算S1流和轴检测器上的S1流和轴检测器的效果。在WIMP探测器中,S1流提供更高的能量核反冲,因此将略微改善DM检测前景。我们发现即使S1包含少于局部密度的10%,也可以将S1流与散装光环分别区分在5到25之间的相对窄的质量范围内。在诸如Cygnus的定向WIMP探测器中,S1更基本上增加了DM检测前景,因为它增强了WIMP信号的各向异性。最后,如果其暗物质成分足够冷,则表明轴突光盘镜具有对S1流的最大潜在敏感性。一旦发现轴质量,就可以从轴功率谱中容易地提取S1的独特速度分布。

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