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A Dark Matter Disc in the Milky Way

机译:银河系中的暗物质盘

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Dark matter direct detection experiments need to know the local phase space density of dark matter fan, (r, v, in order to derive dark matter particle properties. To date, calculations for f_(dm)(r,v,t) have been based on simulations that model the dark matter alone. Here we include the influence of the baryonic matter. We find that a star/gas disc at high redshift (z 1) causes merging satellites to be preferentially dragged towards the disc plane. This results in an accreted dark matter disc that contributes 0.25 —1 times the non-rotating halo density at the Solar position. We discuss the impact of the dark disc on dark matter direct detection experiments, and how we might be able to detect it in future Galactic surveys.
机译:暗物质直接检测实验需要了解暗物质风扇的局部相空间密度,(r,v,以导出暗物质颗粒性质。迄今为止,f_(dm)(r,v,t)的计算基于仿模的模拟单独模拟暗物质。在这里,我们包括齐静电物质的影响。我们发现高射频(Z 1)的星形/燃气盘导致合并卫星优先拖向盘式平面。这导致了凸起的暗物质盘,可在太阳能位置贡献0.25-1倍的非旋转光环密度。我们讨论了黑暗光盘对暗物质直接检测实验的影响,以及我们如何在未来的银河调查中检测到它。

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