...
首页> 外文期刊>The Astrophysical journal >MASS ACCRETION AND ITS EFFECTS ON THE SELF-SIMILARITY OF GAS PROFILES IN THE OUTSKIRTS OF GALAXY CLUSTERS
【24h】

MASS ACCRETION AND ITS EFFECTS ON THE SELF-SIMILARITY OF GAS PROFILES IN THE OUTSKIRTS OF GALAXY CLUSTERS

机译:大量积聚及其对银团簇外气体剖面自相似性的影响

获取原文

摘要

Galaxy clusters exhibit remarkable self-similar behavior which allows us to establish simple scaling relationships between observable quantities and cluster masses, making galaxy clusters useful cosmological probes. Recent X-ray observations suggested that self-similarity may be broken in the outskirts of galaxy clusters. In this work, we analyze a mass-limited sample of massive galaxy clusters from the Omega500 cosmological hydrodynamic simulation to investigate the self-similarity of the diffuse X-ray emitting intracluster medium (ICM) in the outskirts of galaxy clusters. We find that the self-similarity of the outer ICM profiles is better preserved if they are normalized with respect to the mean density of the universe, while the inner profiles are more self-similar when normalized using the critical density. However, the outer ICM profiles as well as the location of accretion shock around clusters are sensitive to their mass accretion rate, which causes the apparent breaking of self-similarity in cluster outskirts. We also find that the collisional gas does not follow the distribution of collisionless dark matter (DM) perfectly in the infall regions of galaxy clusters, leading to 10% departures in the gas-to-DM density ratio from the cosmic mean value. Our results have a number implications for interpreting observations of galaxy clusters in X-ray and through the Sunyaev–Zel'dovich effect, and their applications to cosmology.
机译:银河星团表现出非凡的自相似行为,这使我们能够在可观测量和星团质量之间建立简单的比例关系,从而使银河星团成为有用的宇宙学探测器。最近的X射线观察表明,自相似性可能在星系团的郊区被打破。在这项工作中,我们从Omega500宇宙流体力学模拟中分析了一个质量有限的大质量星系团样本,以研究在星系团郊外弥漫X射线发射团簇内介质(ICM)的自相似性。我们发现,如果将外部ICM轮廓相对于宇宙的平均密度进行归一化,则可以更好地保留它们的自相似性,而当使用临界密度进行归一化时,可以使内部轮廓更自相似。但是,外部ICM轮廓以及簇周围的增生冲击的位置对它们的质量增长速率很敏感,这会导致簇郊区自相似性的明显破坏。我们还发现,碰撞气体并不完全遵循星系团落入区域中无碰撞暗物质(DM)的分布,导致气体与DM的密度比偏离了宇宙平均值的10%。我们的结果对于解释X射线中银河星团的观测结果以及通过Sunyaev-Zel'dovich效应及其在宇宙学中的应用具有许多意义。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号