The evolution of quiescent galaxies at high redshift (z > 1.4)
H. Dom\'inguez S\'anchez, F. Pozzi, C. Gruppioni, A. Cimatti, O., Ilbert, L. Pozzetti, H. McCracken, P. Capak, E. Le Floch, M. Salvato, G., Zamorani, C.M. Carollo, T. Contini, J.P. Kneib, O. Le F\'evre, S.J. Lilly, V., Mainieri, A. Renzini, M. Scodeggio, S. Bardelli

TL;DR
This study investigates the evolution of high-redshift quiescent galaxies (z > 1.4) using a large multi-wavelength dataset, revealing their properties, growth in stellar mass, and the transition epoch around z ~ 1.5, with implications for galaxy formation models.
Contribution
It provides a detailed analysis of the properties and evolution of quiescent galaxies at high redshift, including their stellar mass function and comparison with theoretical models.
Findings
Significant increase in quiescent galaxy stellar mass function from z=3 to z=1.4.
High-redshift quiescent galaxies are old, massive, and have low dust extinction.
The fraction of quiescent galaxies rises from 10% to 50% between z=3 and z=1.4.
Abstract
We have studied the evolution of high redshift quiescent galaxies over an effective area of ~1.7 deg^2 in the COSMOS field. Galaxies have been divided according to their star-formation activity and the evolution of the different populations has been investigated in detail. We have studied an IRAC (mag_3.6 < 22.0) selected sample of ~18000 galaxies at z > 1.4 with multi-wavelength coverage. We have derived accurate photometric redshifts (sigma=0.06) and other important physical parameters through a SED-fitting procedure. We have divided our sample into actively star-forming, intermediate and quiescent galaxies depending on their specific star formation rate. We have computed the galaxy stellar mass function of the total sample and the different populations at z=1.4-3.0. We have studied the properties of high redshift quiescent galaxies finding that they are old (1-4 Gyr), massive…
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