论文标题

XXL调查:XLII。 XXL-N/视频领域中遥远星系簇的星系群的检测和表征:多样性的故事

The XXL survey: XLII. Detection and characterization of the galaxy population of distant galaxy clusters in the XXL-N/VIDEO field: A tale of variety

论文作者

Trudeau, A., Garrel, C., Willis, J., Pierre, M., Gastaldello, F., Chiappetti, L., Ettori, S., Umetsu, K., Adami, C., Adams, N., Bowler, R. A. A., Faccioli, L., Häußler, B., Jarvis, M., Koulouridis, E., Fevre, J. P. Le, Pacaud, F., Poggianti, B., Sadibekova, T.

论文摘要

语境。遥远的星系簇提供了一个有效的实验室,可以在密集环境和早期宇宙时期研究星系演变。目标。我们旨在将遥远的星系簇确定为扩展的X射线源,并与特征明亮的星系过度繁殖。方法。 We use optical and near-infrared (NIR) data from the Hyper Suprime-Cam (HSC) and VISTA Deep Extragalactic Observations (VIDEO) surveys to identify distant galaxy clusters as overdensities of bright, $z_{phot}\geq 0.8$ galaxies associated with extended X-ray sources detected in the ultimate XMM extragalactic survey (XXL).结果。我们从大约4.5 v $^2 $ sky afore中确定了35个候选群集的样本。该样本包括15个新发现的候选簇,十个先前检测到但未确认的簇以及十个光谱确认的簇。尽管这些集群寄托着显示各种淬火水平的星系群,但它们在淬火,以群集为中心的距离和星系光度之间表现出明确的关系。我们的样品中最明亮的簇星系(BCG)显示出与由旧的和红色子样本组成的双峰种群以及更蓝色,更多样化的子样本一致的。结论。星系质量和淬火之间的关系似乎已经以$ z \ sim 1 $的形式建立,尽管以群集为中心的半径没有显着变化。 BCG双峰性可能是通过在某些BCG中存在年轻的恒星组成部分来解释的,但是需要其他数据来确认这种情况。

Context. Distant galaxy clusters provide an effective laboratory in which to study galaxy evolution in dense environments and at early cosmic times. Aims. We aim to identify distant galaxy clusters as extended X-ray sources coincident with overdensities of characteristically bright galaxies. Methods. We use optical and near-infrared (NIR) data from the Hyper Suprime-Cam (HSC) and VISTA Deep Extragalactic Observations (VIDEO) surveys to identify distant galaxy clusters as overdensities of bright, $z_{phot}\geq 0.8$ galaxies associated with extended X-ray sources detected in the ultimate XMM extragalactic survey (XXL). Results. We identify a sample of 35 candidate clusters at $0.80\leq z\leq 1.93$ from an approximately 4.5 deg$^2$ sky area. This sample includes 15 newly discovered candidate clusters, ten previously detected but unconfirmed clusters, and ten spectroscopically confirmed clusters. Although these clusters host galaxy populations that display a wide variety of quenching levels, they exhibit well-defined relations between quenching, cluster-centric distance, and galaxy luminosity. The brightest cluster galaxies (BCGs) within our sample display colours consistent with a bimodal population composed of an old and red subsample together with a bluer, more diverse subsample. Conclusions. The relation between galaxy masses and quenching seem to be already in place at $z\sim 1$, although there is no significant variation of the quenching fraction with the cluster-centric radius. The BCG bimodality might be explained by the presence of a younger stellar component in some BCGs but additional data are needed to confirm this scenario.

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