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Solving the Puzzle of Subhalo Spins

机译:解决亚晕旋转难题

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摘要

Investigating the spin parameter distribution of subhalos in two high-resolution isolated halo simulations, recent work by Onions et al. suggested that typical subhalo spins are consistently lower than the spin distribution found for field halos. To further examine this puzzle, we have analyzed simulations of a cosmological volume with sufficient resolution to resolve a significant subhalo population. We confirm the result of Onions et al. and show that the typical spin of a subhalo decreases with decreasing mass and increasing proximity to the host halo center. We interpret this as the growing influence of tidal stripping in removing the outer layers, and hence the higher angular momentum particles, of the subhalos as they move within the host potential. Investigating the redshift dependence of this effect, we find that the typical subhalo spin is smaller with decreasing redshift. This indicates a temporal evolution, as expected in the tidal stripping scenario.
机译:Onions等人最近的工作在两个高分辨率的孤立光晕模拟中研究了亚晕的自旋参数分布。这表明典型的亚晕自旋始终低于场晕的自旋分布。为了进一步研究这个难题,我们分析了具有足够分辨率的宇宙学模拟,以解决重要的亚晕种群。我们确认了洋葱等人的结果。并表明,亚晕的典型自旋随着质量的减小和与主体晕中心的接近度的增加而减小。我们将其解释为潮汐剥离在去除亚晕的外层以及由此而来的较高角动量粒子时会产生越来越大的影响,因为它们在宿主势中移动。研究这种效应的红移依赖性,我们发现典型的亚晕自旋随着红移的减小而变小。正如潮汐剥离方案中所预期的那样,这表明存在时间演变。

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