论文标题

昏迷集群郊区的完整视图

A complete view of the outskirts of the Coma cluster

论文作者

Mirakhor, M. S., Walker, S. A.

论文摘要

我们提出了附近昏迷集群的新的XMM-Newton Mosaic,它覆盖了群集到病毒半径,几乎完整的方位角覆盖范围。这种大的马赛克与普朗克Sunyaev Zel'Dovich效应观测值结合在一起,以在方位平均的轮廓和36个角扇区中恢复群内培养基的热力学特性,从而在其整体上产生了郊区郊区郊区的热力学的最高空间分辨率视图。超过$ r_ {500} $,我们沿较少受干扰的方向的结块校正熵测量在统计学上与非辐射模拟预测的幂律熵剖面一致,而气体质量分数与平均宇宙baryon baryon分数一致。 However, there is a clear entropy deficit in the outskirts to the southwest, coinciding with where Coma connects to a cosmic web filament which joins it to Abell 1367. The low entropy to the southwest extends from 0.5-1.0$r_{200}$, and is consistent with what is expected from simulations of a filamentary gas stream penetrating into the cluster as it continues to accrete matter from the cosmic web.我们还发现,回收量的径向剖面在郊区越来越不对称,尤其是沿着更令人不安的方向,与宇宙学模拟的预测一致。

We present a new extended XMM-Newton mosaic of the nearby Coma cluster, which covers the cluster out to the virial radius with nearly complete azimuthal coverage. This large mosaic is combined with the Planck Sunyaev Zel'dovich effect observations to recover the thermodynamic properties of the intracluster medium in an azimuthally averaged profile and 36 angular sectors, producing the highest spatial resolution view of the thermodynamics of the outskirts of a galaxy cluster in its entirety. Beyond $r_{500}$, our clumping corrected entropy measurements along the less disturbed directions are statistically consistent with the power-law entropy profile predicted by non-radiative simulations, and the gas mass fraction agrees with the mean cosmic baryon fraction. However, there is a clear entropy deficit in the outskirts to the southwest, coinciding with where Coma connects to a cosmic web filament which joins it to Abell 1367. The low entropy to the southwest extends from 0.5-1.0$r_{200}$, and is consistent with what is expected from simulations of a filamentary gas stream penetrating into the cluster as it continues to accrete matter from the cosmic web. We also find that the radial profiles of the recovered quantities become increasingly asymmetric in the outskirts, particularly along the more disturbed directions, consistent with the predictions of cosmological simulations.

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