The Massive and Distant Clusters of WISE Survey

IF 6.5 2区 物理与天体物理 Astronomy & Astrophysics Pub Date : 2020-04-14 DOI:10.1051/0004-6361/202037818
L. Di Mascolo, T. Mroczkowski, E. Churazov, E. Moravec, M. Brodwin, Anthony H. Gonzalez, B. Decker, P. Eisenhardt, S. Stanford, D. Stern, R. Sunyaev, D. Wylezalek
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引用次数: 2

Abstract

Context. The Massive and Distant Clusters of WISE Survey (MaDCoWS) provides a catalog of high-redshift (0.7 ≲ z ≲ 1.5) infrared-selected galaxy clusters. However, the verification of the ionized intracluster medium, indicative of a collapsed and nearly virialized system, is made challenging by the high redshifts of the sample members. Aims. The main goal of this work is to test the capabilities of the Atacama Compact Array (ACA; also known as the Morita Array) Band 3 observations, centered at about 97.5 GHz, to provide robust validation of cluster detections via the thermal Sunyaev–Zeldovich (SZ) effect. Methods. Using a pilot sample that comprises ten MaDCoWS galaxy clusters, accessible to ACA and representative of the median sample richness, we infer the masses of the selected galaxy clusters and respective detection significance by means of a Bayesian analysis of the interferometric data. Results. Our test of the Verification with the ACA – Localization and Cluster Analysis (VACA LoCA) program demonstrates that the ACA can robustly confirm the presence of the virialized intracluster medium in galaxy clusters previously identified in full-sky surveys. In particular, we obtain a significant detection of the SZ effect for seven out of the ten VACA LoCA clusters. We note that this result is independent of the assumed pressure profile. However, the limited angular dynamic range of the ACA in Band 3 alone, short observational integration times, and possible contamination from unresolved sources limit the detailed characterization of the cluster properties and the inference of the cluster masses within scales appropriate for the robust calibration of mass–richness scaling relations.
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WISE 勘测的大规模遥远星团
背景。WISE巡天的大质量和遥远星系团(MaDCoWS)提供了一份高红移(0.7 ≲ z ≲1.5)红外选择星系团目录。然而,由于样本成员的高红移,对表明星系团坍缩和接近病毒化的星系团内部电离介质的验证变得非常困难。这项工作的主要目的是测试阿塔卡马紧凑型阵列(ACA,又称森田阵列)波段3(以约97.5千兆赫为中心)的观测能力,通过热苏尼耶夫-泽尔多维奇(SZ)效应对星团探测进行有力的验证。我们使用了一个试验样本,其中包括十个MaDCoWS星系团,它们都是ACA可以观测到的,并且代表了样本丰富度的中位数,我们通过对干涉数据进行贝叶斯分析,推断出了所选星系团的质量以及各自的探测意义。我们用ACA-定位和星系团分析(VACA LoCA)程序进行的验证测试表明,ACA可以有力地证实先前在全天空巡天中发现的星系团中存在病毒化的星系团内介质。特别是,我们对十个VACA LoCA星系团中的七个星系团进行了SZ效应的重要探测。我们注意到,这一结果与假定的压力曲线无关。然而,仅在波段 3 中的 ACA 角度动态范围有限、观测积分时间短以及未解决源可能造成的污染,都限制了对星团特性的详细描述,也限制了在适合质量-富集比例关系校准的尺度内对星团质量的推断。
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Astronomy & Astrophysics
Astronomy & Astrophysics ASTRONOMY & ASTROPHYSICS-
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期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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