论文标题

使用球状簇区分暗物质尖与芯

Distinguishing Dark Matter Cusps from Cores using Globular Clusters

论文作者

Modak, Shaunak, Danieli, Shany, Greene, Jenny E.

论文摘要

球状簇(GC)对宿主星系的暗物质光环的特性提供了宝贵的见解。使用纳入半分析动力学摩擦和GC-GC合并处方的N体模拟,我们研究了Cuspy和Cored Dark Matter Halos中GC径向分布和质量功能的演变。对矮人GARAXY UGC 7369中的GC富含GC系统的动力学进行建模,我们发现摩擦引起的灵感和随后的大量GC的合并可以自然地解释GCS的质量分离以及核星团(NSC)的存在。但是,仅当暗物质光环cuspy时,需要形成NSC所需的多个合并。在核心的光环中,核心内动态摩擦的停滞阻止了GC的灵感,因此GC合并速率大大下降,从而排除了NSC的形成。因此,我们认为NSC的存在需要UGC 7369中的尖齿。更广泛地说,我们建议NSC的存在以及由于合并而引起的GC质量函数的相应变化可以用作星系中的Cuspy Halo的指标,以期我们期望NSC形成合并为合并。这些可观察的物品代表了对其他内部光环密度概况约束技术的简单,强大的补充,并应直接扩展到较大的样品。

Globular Clusters (GCs) provide valuable insight into the properties of their host galaxies' dark matter halos. Using N-body simulations incorporating semianalytic dynamical friction and GC-GC merger prescriptions, we study the evolution of GC radial distributions and mass functions in cuspy and cored dark matter halos. Modeling the dynamics of the GC-rich system in the dwarf galaxy UGC 7369, we find that friction-induced inspiral and subsequent mergers of massive GCs can naturally and robustly explain the mass segregation of the GCs and the existence of a nuclear star cluster (NSC). However, the multiple mergers required to form the NSC only take place when the dark matter halo is cuspy. In a cored halo, stalling of the dynamical friction within the core halts the inspiral of the GCs, and so the GC merger rate falls significantly, precluding the formation of an NSC. We therefore argue that the presence of an NSC requires a cusp in UGC 7369. More generally, we propose that the presence of an NSC and the corresponding alteration of the GC mass function due to mergers may be used as an indicator of a cuspy halo for galaxies in which we expect NSC formation to be merger-dominated. These observables represent a simple, powerful complement to other inner halo density profile constraint techniques, and should allow for straightforward extension to larger samples.

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