论文标题

儿童DR3中的Amico Galaxy簇:星系属性及其红移依赖性

AMICO galaxy clusters in KiDS-DR3: galaxy population properties and their redshift dependence

论文作者

Radovich, Mario, Tortora, Crescenzo, Bellagamba, Fabio, Maturi, Matteo, Moscardini, Lauro, Puddu, Emanuella, Roncarelli, Mauro, Roy, Nivya, Bardelli, Sandro, Marulli, Federico, Sereno, Mauro, Getman, Fedor, Napolitano, Nicola R.

论文摘要

使用自适应匹配的群集(AMICO)algorithm的自适应标识符,从414平方摄氏度的面积中获得了一个414平方英尺的面积,高于红移$ z \ sim0.8 $。在两篇同伴论文中提出了目录和丰富质量关系的校准。在这里,我们描述了群集中央星系的选择以及蓝色和红色簇成员的分类,并分析了中央星系的红色/蓝色分数,簇质量,亮度和恒星质量,以及它们对红移和簇丰富的依赖。我们使用Illustris-TNG模拟,该模拟代表了星系形成的最新宇宙学模拟,作为解释结果的基准。在低红移($ z \ le 0.4 $)上发现了与模拟的良好协议,而在较高的红移下,模拟表明蓝色星系的比例低于儿童 - amico目录中的蓝色星系:我们认为这可能是由于模拟中恒星形成星系的低估。在两个最亮的中央星系之间选择具有较大幅度差异的簇的选择,这可能表明群集动态状态更加轻松,可以改善中央星系的观察到的和模拟的簇质量和恒星质量之间的一致性。我们还发现,在给定的簇质量上,蓝色中央星系的恒星质量低于红色的星系。

A catalogue of galaxy clusters was obtained in an area of 414 sq deg up to a redshift $z\sim0.8$ from the Data Release 3 of the Kilo-Degree Survey (KiDS-DR3), using the Adaptive Matched Identifier of Clustered Objects (AMICO) algorithm. The catalogue and the calibration of the richness-mass relation were presented in two companion papers. Here we describe the selection of the cluster central galaxy and the classification of blue and red cluster members, and analyze the main cluster properties, such as the red/blue fraction, cluster mass, brightness and stellar mass of the central galaxy, and their dependence on redshift and cluster richness. We use the Illustris-TNG simulation, which represents the state-of-the-art cosmological simulation of galaxy formation, as a benchmark for the interpretation of the results. A good agreement with simulations is found at low redshifts ($z \le 0.4$), while at higher redshifts the simulations indicate a lower fraction of blue galaxies than what found in the KiDS-AMICO catalogue: we argue that this may be due to an underestimate of star-forming galaxies in the simulations. The selection of clusters with a larger magnitude difference between the two brightest central galaxies, which may indicate a more relaxed cluster dynamical status, improves the agreement between the observed and simulated cluster mass and stellar mass of the central galaxy. We also find that at a given cluster mass the stellar mass of blue central galaxies is lower than that of the red ones.

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