论文标题

三百个项目:星系组无法在集群中插入

The Three Hundred project: Galaxy groups do not survive cluster infall

论文作者

Haggar, Roan, Kuchner, Ulrike, Gray, Meghan E., Pearce, Frazer R., Knebe, Alexander, Yepes, Gustavo, Cui, Weiguang

论文摘要

星系簇通过将星系作为单个对象或星系组成员增长而生长。这些群体可以强烈影响星系的演化,从星系中剥离气体,并提高星系合并的速度。但是,尚不清楚小组与大集群相互作用时的动力学和结构如何影响,或者所有组成员是否一定都经历相同的进化过程。使用来自Threehuntred项目的数据,该项目由324个大型星系簇的324个流体动力重新汇合,我们研究了通过群集的1340组的性质。我们发现,一半的组星系在第一个山口气中与集团的重力脱落,通常在群集进入后仅0.5-1。大多数小组迅速将卫星种群混合在一起。后来只有8%的输液组光环离开了集群,尽管在这些星系中,所有的星系都在此阶段变得未陷入困境,潮湿或合并到中心。星系在以群体为中心的相空间中的位置也很重要 - 仅一旦一个组在集群中,并且组中心的缓慢移动星系可能会被潮湿或与另一个星系合并。这项工作将有助于未来的观察研究来限制组星系的环境历史。例如,在集群内部或附近观察到的小组可能最近接近了,这意味着他们的星系以前不会经历集群环境。

Galaxy clusters grow by accreting galaxies as individual objects, or as members of a galaxy group. These groups can strongly impact galaxy evolution, stripping the gas from galaxies, and enhancing the rate of galaxy mergers. However, it is not clear how the dynamics and structure of groups are affected when they interact with a large cluster, or whether all group members necessarily experience the same evolutionary processes. Using data from TheThreeHundred project, a suite of 324 hydrodynamical resimulations of large galaxy clusters, we study the properties of 1340 groups passing through a cluster. We find that half of group galaxies become gravitationally unbound from the group by the first pericentre, typically just 0.5-1 Gyr after cluster entry. Most groups quickly mix with the cluster satellite population; only 8% of infalling group haloes later leave the cluster, although for nearly half of these, all of their galaxies have become unbound, tidally disrupted or merged into the central by this stage. The position of galaxies in group-centric phase space is also important -- only galaxies near the centre of a group ($r\lesssim0.7R_{200}$) remain bound once a group is inside a cluster, and slow-moving galaxies in the group centre are likely to be tidally disrupted, or merge with another galaxy. This work will help future observational studies to constrain the environmental histories of group galaxies. For instance, groups observed inside or nearby to clusters have likely approached very recently, meaning that their galaxies will not have experienced a cluster environment before.

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