Cluster galaxies in XMMU J2235-2557: galaxy population properties in most massive environments at z~1.4
V. Strazzullo, P. Rosati, M. Pannella, R. Gobat, J. Santos, M. Nonino,, R. Demarco, C. Lidman, M. Tanaka, C. Mullis, C. Nunez, A. Rettura, M.J. Jee,, H. Bohringer, R. Bender, R. Bouwens, K. Dawson, R. Fassbender, M. Franx, S., Perlmutter, M. Postman

TL;DR
This study investigates galaxy populations in a massive cluster at z~1.4, revealing mature, quiescent galaxies with early-type morphology, and evidence of ongoing structural evolution through minor mergers.
Contribution
It provides detailed insights into the properties and evolution of galaxies in a high-redshift massive cluster, highlighting early mass assembly and morphological changes.
Findings
Red sequence of old, massive galaxies with low star formation.
High-mass end of stellar mass function already established.
Massive galaxies are smaller than local counterparts, indicating ongoing structural evolution.
Abstract
We present a multi-wavelength study of galaxy populations in the core of the massive, X-ray luminous cluster XMMU J2235 at z=1.39, based on VLT and HST optical and near-infrared photometry. Luminosity functions in the z, H, and Ks bands show a faint-end slope consistent with being flat, and a characteristic magnitude M* close to passive evolution predictions of M* of local massive clusters, with a formation redshift z>2. The color-magnitude and color-mass diagrams show evidence of a tight red sequence of massive galaxies, with overall old stellar populations, generally early-type morphology, typically showing early-type spectral features and rest-frame far-UV emission consistent with very low star formation rates (SFR<0.2Msun/yr). Star forming spectroscopic members, with SFRs of up to ~100Msun/yr, are all located at clustercentric distances >~250kpc, with the central cluster region…
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