论文标题

XXL调查:XLVIII;远处XXL簇的X射线随访:质量,缩放关系和AGN污染

The XXL Survey: XLVIII; X-ray follow-up of distant XXL clusters: Masses, scaling relations and AGN contamination

论文作者

Duffy, R. T., Logan, C. H. A., Maughan, B. J., Eckert, D., Clerc, N., Ettori, S., Gastaldello, F., Koulouridis, E., Pierre, M., Ricci, M., Sereno, M., Valtchanov, I., Willis, J. P.

论文摘要

我们使用XXL调查中发现的6个群集的深度随访XMM-Newton观察结果$ z> 1 $,以获得对其X射线属性的强大测量,并研究低红移的缩放关系在$ z> 1 $中有效的程度。该样品是独特的,因为已经对AGN污染进行了研究,该样品可确保系统不确定性不会破坏测量,并且在红移时降低了质量,例如Sunyaev-Zel'dovich(SZ)选定的簇。我们确定点源对XXL群集通量的通量贡献,以测试其他高红移群集候选物中AGN的存在,并找到3XLSS J231626.8-533822将点源错误地分类为群集和3xLSS J23232737.337.33-3-541618 cluster and A.A.我们提出了第一次尝试在$ z> 1 $ x射线的明亮子样本中测量具有已知选择功能的星系簇的静水质量。高颗粒背景的时期显着减少了观测的有效暴露时间(在某些情况下损失> 50%)限制了这项研究的能力。当与较高质量的互补SZ选定的簇样品结合使用时,数据似乎与ICM性质和簇质量之间的低红移缩放缩放关系的自相似性演变一致,这表明X射线温度,气体质量和SZ信号等性能在较高的供应中仍然是可靠的质量代理。

We use deep follow-up XMM-Newton observations of 6 clusters discovered in the XXL Survey at $z>1$ to gain robust measurements of their X-ray properties and to investigate the extent to which scaling relations at low redshift are valid at $z>1$. This sample is unique as it has been investigated for AGN contamination, which ensures measurements are not undermined by systematic uncertainties, and pushes to lower mass at higher redshift than is usually possible, for example with Sunyaev-Zel'dovich (SZ) selected clusters. We determine the flux contribution of point sources to the XXL cluster flux in order to test for the presence of AGN in other high-redshift cluster candidates, and find 3XLSS J231626.8-533822 to be a point source misclassified as a cluster and 3XLSS J232737.3-541618 to be a genuine cluster. We present the first attempt to measure the hydrostatic masses in a bright subsample of $z>1$ X-ray selected galaxy clusters with a known selection function. Periods of high particle background significantly reduced the effective exposure times of observations (losing >50% in some cases) limiting the power of this study. When combined with complementary SZ selected cluster samples at higher masses, the data appear broadly consistent with the self-similar evolution of the low redshift scaling relations between ICM properties and cluster mass, suggesting that properties such as the X-ray temperature, gas mass and SZ signal remain reliable mass proxies even at high redshift.

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