论文标题
利用NIKA2/XMM-NEWTON成像协同中级质量,高$ z $ $ z $ GALAXY群集在Nika2 SZ大型程序中
Exploiting NIKA2/XMM-Newton imaging synergy for intermediate mass, high-$z$ galaxy clusters within the NIKA2 SZ Large Program
论文作者
论文摘要
直至高红移和向下至低质量的高分辨率映射(ICM)对于得出星系簇的准确质量估计至关重要,并了解影响基于星系群的宇宙学研究的系统效应。我们提出了ACT-CL J0215.4+0030的空间解决的Sunyaev-Zel'Dovich(SZ)/X射线分析,一个高红移($ z = 0.865 $)中间质量的星系簇($ m_ {500}作为正在进行的Nika2 SZ大型程序的一部分,对物体的代表性样本的随访$ 0.5 \ leqslant z \ leqslant 0.9 $。除了由其质量和红移引起的微弱性和小角度外,该簇还被显着影响SZ信号的点源污染。因此,对于NIKA2群集样本的最具挑战性来源,这是一个有趣的案例研究。我们介绍了该集群的NIKA2观察结果和结果数据。我们通过对NIKA2 150 GHz图中的SZ信号和点源进行联合分析来重建ICM压力曲线。我们获得具有NIKA2的ICM热力学特性的高质量估计。我们将从NIKA2 MAP提取的压力曲线与仅通过对群集的XMM-Newton观测值进行的X射线数据获得的压力曲线进行了比较。我们将NIKA2压力曲线与X射线删除密度相结合,以提取ICM上的详细信息。其热力学特性的径向分布表明该簇具有干扰的核心。集群的静水质量应与SZ和X射线缩放关系的估计兼容。我们得出的结论是,在通过点源对污染的仔细处理后,NIKA2 SZ大型程序即使是最微弱的簇之一,也可以为ICM的热力学提供质量信息。
High-resolution mapping of the intra-cluster medium (ICM) up to high redshift and down to low masses is crucial to derive accurate mass estimates of the galaxy cluster and to understand the systematic effects affecting cosmological studies based on galaxy clusters. We present a spatially-resolved Sunyaev-Zel'dovich (SZ)/X-ray analysis of ACT-CL J0215.4+0030, a high redshift ($z=0.865$) galaxy cluster of intermediate mass ($M_{500}\simeq3.5\times10^{14}\;\mathrm{M_\odot}$) observed as part of the ongoing NIKA2 SZ Large Program, a follow up of a representative sample of objects at $0.5 \leqslant z \leqslant 0.9$. In addition to the faintness and small angular size induced by its mass and redshift, the cluster is contaminated by point sources that significantly affect the SZ signal. Therefore, this is an interesting case study for the most challenging sources of the NIKA2 cluster sample. We present the NIKA2 observations of this cluster and the resulting data. We reconstruct the ICM pressure profile by performing a joint analysis of the SZ signal and of the point sources in the NIKA2 150 GHz map. We obtain high-quality estimates of the ICM thermodynamical properties with NIKA2. We compare the pressure profile extracted from the NIKA2 map to the pressure profile obtained from X-ray data only by deprojecting XMM-Newton observations of the cluster. We combine the NIKA2 pressure profile with the X-ray deprojected density to extract detailed information on the ICM. The radial distribution of its thermodynamic properties indicate that the cluster has a disturbed core. The hydrostatic mass of the cluster is to be compatible with estimations from SZ and X-rays scaling relations. We conclude that the NIKA2 SZ large program can deliver quality information on the thermodynamics of the ICM even for one of its faintest clusters, after a careful treatment of the contamination by point sources.