论文标题
将暗物质光环的结构与它们的组装和环境联系起来
Relating the structure of dark matter halos to their assembly and environment
论文作者
论文摘要
我们使用大型$ n $体仿真来研究暗物质光环与其组装历史和环境的结构特性的关系。单个光晕组装历史的复杂性可以通过少数主要成分(PC)很好地描述,与编队时间相比,该组件对光环组装历史提供了更完整的描述,并且与光晕结构特性具有更强的相关性。使用使用随机合奏方法构建的决策树,我们发现可以通过组合四个主导预测变量,轴心比和旋转的差异约为$ 60 \%$,$ 10 \%$和$ 20 \%$ $,可以通过结合四个主导预测变量来解释:组装历史记录的第一台PC,Halo Mass,Halo Mass和两个环境参数。光晕浓度以光晕组件为主。发现局部环境对于轴比和自旋很重要,但用光环组件退化。已知组装和环境因素解释的轴比和自旋方差的较小百分比表明,该方差是由许多细微的因素产生的,应将其建模。与它们的方差相比,光环固有性能与环境之间的关系较弱,局部潮汐场的各向异性与光环特性具有最强的相关性。我们的降低和回归方法可以帮助简化光环群体的表征,并阐明光环特性之间的变性。
We use a large $N$-body simulation to study the relation of the structural properties of dark matter halos to their assembly history and environment. The complexity of individual halo assembly histories can be well described by a small number of principal components (PCs), which, compared to formation times, provide a more complete description of halo assembly histories and have a stronger correlation with halo structural properties. Using decision trees built with the random ensemble method, we find that about $60\%$, $10\%$, and $20\%$ of the variances in halo concentration, axis ratio, and spin, respectively, can be explained by combining four dominating predictors: the first PC of the assembly history, halo mass, and two environment parameters. Halo concentration is dominated by halo assembly. The local environment is found to be important for the axis ratio and spin but is degenerate with halo assembly. The small percentages of the variance in the axis ratio and spin that are explained by known assembly and environmental factors suggest that the variance is produced by many nuanced factors and should be modeled as such. The relations between halo intrinsic properties and environment are weak compared to their variances, with the anisotropy of the local tidal field having the strongest correlation with halo properties. Our method of dimension reduction and regression can help simplify the characterization of the halo population and clarify the degeneracy among halo properties.