论文标题

银河系群的过去历史由他们现在的邻居讲述

The Past History of Galaxy Clusters told by their present neighbors

论文作者

Sorce, Jenny G., Gottlöber, Stefan, Yepes, Gustavo

论文摘要

如果正确理解其进化,星系群可以在现代宇宙学中发挥关键作用。但是,观察到的簇只给了我们一个动态状态的一个时间范围。因此,找到与其组装历史良好相关的簇的目前可观察到的数据构成了宇宙学的不可估量的工具。以前的研究将集群的环境描述与其形成历史相关联,以光晕质量 - 环境关系为主。本文介绍了群集大小晕圈的当前邻居分布与后一种质量组装历史之间的无质量相关性。从大型公园模拟中,我们提取两个大型随机卤素样本,质量从处女座到昏迷群的尺寸不等。此外,为了找到处女座集群形成历史的主要环境罪魁祸首,我们将处女座大小的光环与从类似于当地宇宙的模拟中提取的200个处女座的光环进行了比较。以不同以集群为中心的邻居的数量允许区分具有不同质量积聚历史的群集。与处女座状的光环类似,具有众多邻居的群集在其病毒半径的距离内经历了大约2倍的Z〜1质量积聚时期的过渡,相对于平均值和安静的历史。相反,很少有邻居的集群具有相反的趋势:从被动到主动组装历史。此外,在其病毒半径的大约4倍之内,具有大量伴侣的群集往往具有最近积极的合并历史。因此,集群邻居的径向分布提供了对这些对象过去历史的宝贵见解。

Galaxy clusters can play a key role in modern cosmology provided their evolution is properly understood. However, observed clusters give us only a single timeframe of their dynamical state. Therefore, finding present observable data of clusters that are well correlated to their assembly history constitutes an inestimable tool for cosmology. Former studies correlating environmental descriptors of clusters to their formation history are dominated by halo mass - environment relations. This paper presents a mass-free correlation between the present neighbor distribution of cluster-size halos and the latter mass assembly history. From the Big Multidark simulation, we extract two large samples of random halos with masses ranging from Virgo to Coma cluster sizes. Additionally, to find the main environmental culprit for the formation history of the Virgo cluster, we compare the Virgo-size halos to 200 Virgo-like halos extracted from simulations that resemble the local Universe. The number of neighbors at different cluster-centric distances permits discriminating between clusters with different mass accretion histories. Similarly to Virgo-like halos, clusters with numerous neighbors within a distance of about 2 times their virial radius experience a transition at z~1 between an active period of mass accretion, relative to the mean, and a quiet history. On the contrary, clusters with few neighbors share an opposite trend: from passive to active assembly histories. Additionally, clusters with massive companions within about 4 times their virial radius tend to have recent active merging histories. Therefore, the radial distribution of cluster neighbors provides invaluable insights into the past history of these objects.

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