论文标题

第一个暗物质光环的内尖:在宇宙学环境中形成和生存

Inner cusps of the first dark matter haloes: Formation and survival in a cosmological context

论文作者

Delos, M. Sten, White, Simon D. M.

论文摘要

我们使用非常高的分辨率宇宙变焦模拟遵循由高斯初始条件形成的十二个第一代光环的早期演变,而无尺度的功率光谱在小尺度上通过波数中的高斯截断。初始崩溃发生在不同的薄片或细丝状的苛性形态范围内,但是在几乎所有情况下,它都会导致数值收敛的密度cusp,并具有$ρ= ar^{ - 3/2} $,总质量与初始线性密度场中相应峰的总质量可比。常数$ a $估计比该峰的性质估计约为10%。该结果与寒冷和温暖的暗物质宇宙中第一个光环的早期作品一致。在中央尖端内,速度色散接近各向同性,而均衡表面倾向于与较大半径处的光环主体的主体相一致。随着光环的增长,它们的尖端经常(但并非总是)在中间半径上覆盖了其他材料,以产生与更大质量光环的Einasto或NFW形成更相似的曲线。然而,在我们可以解决它们的范围内,尖齿在最小的半径上生存。主要合并可能会打扰他们,但是在我们研究的情况下,效果非常薄弱。尖端延伸至我们的仿真的分辨率限制,如果初始功率谱截止产生,则通常比相位保护产生的核心大于几个核心。

We use very high resolution cosmological zoom simulations to follow the early evolution of twelve first-generation haloes formed from gaussian initial conditions with scale-free power spectra truncated on small scales by a gaussian in wavenumber. Initial collapse occurs with a diverse range of sheet- or filament-like caustic morphologies, but in almost all cases it gives rise to a numerically converged density cusp with $ρ= Ar^{-3/2}$ and total mass comparable to that of the corresponding peak in the initial linear density field. The constant $A$ can be estimated to within about 10 per cent from the properties of this peak. This outcome agrees with earlier work on the first haloes in cold and warm dark matter universes. Within central cusps, the velocity dispersion is close to isotropic, and the equidensity surfaces tend to align with those of the main body of the halo at larger radii. As haloes grow, their cusps are often (but not always) overlaid with additional material at intermediate radii to produce profiles more similar to the Einasto or NFW forms typical of more massive haloes. Nevertheless, to the extent that we can resolve them, cusps survive at the smallest radii. Major mergers can disturb them, but the effect is quite weak in the cases that we study. The cusps extend down to the resolution limits of our simulations, which are typically a factor of several larger than the cores that would be produced by phase-space conservation if the initial power spectrum cutoff arises from free streaming.

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