Multi-wavelength observations of a rich galaxy cluster at z ~ 1: the HST/ACS colour-magnitude diagram
Joana S. Santos (1,2), Piero Rosati (3), Raphael Gobat (3), Chris, Lidman (4), Kyle Dawson (5), Saul Perlmutter (5), Hans Boehringer (2), Italo, Balestra (2), Chris R. Mullis (6), Rene Fassbender (2), Jan Kohnert (7),, Georg Lamer (7), Alessandro Rettura (8), Charles Rite (3)

TL;DR
This study presents multi-wavelength observations of a galaxy cluster at z~1, analyzing its galaxy properties, color-magnitude relation, and stellar ages to understand galaxy evolution at high redshift.
Contribution
It provides detailed photometric, structural, and spectral analysis of cluster galaxies at z~1, including the tightness of the red sequence and stellar population ages, using combined optical, NIR, and spectroscopic data.
Findings
The red sequence is very tight with minimal scatter.
Cluster galaxies have a median stellar age of 4.3 Gyr.
No significant evolution in the red sequence properties up to z~1.
Abstract
XMMU J1229+0151 is a rich galaxy cluster with redshift z=0.975, that was serendipitously detected in X-rays within the scope of the XMM-Newton Distant Cluster Project. HST/ACS observations in the i775 and z850 passbands, as well as VLT/FORS2 spectroscopy were further obtained, in addition to follow-up Near-Infrared (NIR) imaging in J- and Ks-bands with NTT/SOFI. We investigate the photometric, structural and spectral properties of the early-type galaxies in the high-redshift cluster XMMU J1229+0151. Source detection and aperture photometry are performed in the optical and NIR imaging. Galaxy morphology is inspected visually and by means of Sersic profile fitting to the 21 spectroscopically confirmed cluster members in the ACS field of view. The i775-z850 colour-magnitude relation (CMR) is derived with a method based on galaxy magnitudes obtained by fitting the surface brightness of the…
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