论文标题
银河系簇Cl J1226.9+3332的多探针分析:静水质量和静静力到镜头偏差
Multi-probe analysis of the galaxy cluster CL J1226.9+3332: Hydrostatic mass and hydrostatic-to-lensing bias
论文作者
论文摘要
对星系簇的质量的确切估计是宇宙学的主要问题。大型星系群集调查依赖于将群集可观察到的群体与质量相关联的缩放定律。从具有NIKA2和XMM-Newton仪器的〜45个星系簇的高分辨率观测值中,Nika2 SZ大程序应提供Thermal Sunyaev-Zel'Dovich效应与静水体质量之间的准确缩放关系。在本文中,我们介绍了众所周知的星系群集CL J1226.9+3332的静态分析,这是NIKA2 SZ大型程序中最高的红移簇,z = 0.89。我们将NIKA2观测值与来自Nika,Bolocam和Mustang Instruments以及XMM-Newton X射线观测的热阳光Sunyaev-Zel'Dovich数据相结合,并测试系统效应对质量重建的影响。我们得出的结论是,在R500定义综合质量时,质量分布形状的略有差异可能至关重要,这证明了建模在质量测定中的重要性。我们通过显示与文献中发现的所有结果的一致性,证明了静液压质量估计的鲁棒性。宇宙学的另一个关键信息是假设静水平衡假设的质量的偏见。基于与哈勃(Clash)数据的簇镜头和超新星调查的透镜收敛图,我们获得了CL J1226.9+3332的透镜质量估计。由此,我们能够测量该集群的静静力到镜头质量偏置,该群集从1-BHSE/镜头〜0.7到1,呈现数据集和质量重建模型对偏差的影响。
The precise estimation of the mass of galaxy clusters is a major issue for cosmology. Large galaxy cluster surveys rely on scaling laws that relate cluster observables to their masses. From the high resolution observations of ~ 45 galaxy clusters with NIKA2 and XMM-Newton instruments, the NIKA2 SZ Large Program should provide an accurate scaling relation between the thermal Sunyaev-Zel'dovich effect and the hydrostatic mass. In this paper, we present an exhaustive analysis of the hydrostatic mass of the well known galaxy cluster CL J1226.9+3332, the highest-redshift cluster in the NIKA2 SZ Large Program at z = 0.89. We combine the NIKA2 observations with thermal Sunyaev-Zel'dovich data from NIKA, Bolocam and MUSTANG instruments and XMM-Newton X-ray observations and test the impact of the systematic effects on the mass reconstruction. We conclude that slight differences in the shape of the mass profile can be crucial when defining the integrated mass at R500, which demonstrates the importance of the modeling in the mass determination. We prove the robustness of our hydrostatic mass estimates by showing the agreement with all the results found in the literature. Another key information for cosmology is the bias of the masses estimated assuming hydrostatic equilibrium hypothesis. Based on the lensing convergence maps from the Cluster Lensing And Supernova survey with Hubble (CLASH) data, we obtain the lensing mass estimate for CL J1226.9+3332. From this we are able to measure the hydrostatic-to-lensing mass bias for this cluster, that spans from 1 - bHSE/lens ~ 0.7 to 1, presenting the impact of data-sets and mass reconstruction models on the bias.