论文标题

无需subhaloes的暗物质光环密度曲线

Illuminating Dark Matter Halo Density Profiles Without Subhaloes

论文作者

Fielder, Catherine E., Mao, Yao-Yuan, Zentner, Andrew R., Newman, Jeffrey A., Wu, Hao-Yi, Wechsler, Risa

论文摘要

冷暗物质光环由相对光滑的暗物质组成部分以及绑定的副唱片系统组成。在光环密度曲线的研究中包括所有光环质量,包括质量的所有光环质量,包括所有光环质量。但是,在观察性研究中,卫星通常被视为具有自身独特的暗物质密度曲线,除了宿主的轮廓外。这种差异使得理论和观察到的结果之间的比较很困难。在这项工作中,我们通过排除子宫内包含的质量来研究宿主光环的平滑成分的密度曲线。我们发现平滑光环成分(无子径)的密度曲线与常规的光晕密度曲线大不相同。在大半径上,平滑轮廓较快下降,并且并未以标准NFW曲线为特征。我们还发现,与标准浓度相比,源自平滑密度曲线的浓度在固定质量下显示出较少的散射和较弱的质量依赖性。平滑和标准的光晕曲线都可以通过广义的Einasto曲线(具有改良的中央斜率的Einasto曲线,比NFW或Einasto轮廓较小的剩余物)来描述。这些结果适用于银河系和簇质量光环。平滑光环曲线的这种新表征对于许多分析,例如镜头和暗物质an灭是有用的,其中应分别考虑光光的光滑和块状成分。

Cold dark matter haloes consist of a relatively smooth dark matter component as well as a system of bound subhaloes. It is the prevailing practice to include all halo mass, including mass in subhaloes, in studies of halo density profiles. However, often in observational studies satellites are treated as having their own distinct dark matter density profiles in addition to the profile of the host. This difference makes comparisons between theoretical and observed results difficult. In this work we investigate density profiles of the smooth components of host haloes by excluding mass contained within subhaloes. We find that the density profiles of the smooth halo component (without subhaloes) differs substantially from the conventional halo density profile. Smooth profiles decline more rapidly at large radii and are not well characterised by the standard NFW profile. We also find that concentrations derived from smooth density profiles exhibit less scatter at fixed mass and a weaker mass dependence than standard concentrations. Both smooth and standard halo profiles can be described by a generalised Einasto profile, an Einasto profile with a modified central slope, with smaller residuals than either an NFW or Einasto profile. These results hold for both Milky Way-mass and cluster-mass haloes. This new characterisation of smooth halo profiles can be useful for many analyses, such as lensing and dark matter annihilation, in which the smooth and clumpy components of a halo should be accounted for separately.

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