The zCOSMOS 10k-sample: the role of galaxy stellar mass in the colour-density relation up to z=1
O. Cucciati, A. Iovino, K. Kovac, M. Scodeggio, S.J. Lilly, M., Bolzonella, S. Bardelli, D. Vergani, L.A.M. Tasca, E. Zucca, G. Zamorani, L., Pozzetti, C. Knobel, P. Oesch, F. Lamareille, K. Caputi, P. Kampczyk, L., Tresse, C. Maier, C.M. Carollo, T. Contini, J.-P. Kneib

TL;DR
This study investigates how galaxy colour, stellar mass, and local density are interrelated up to redshift 1, revealing that environment influences galaxy properties mainly for lower-mass galaxies and that stellar mass is the primary determinant of galaxy colour.
Contribution
It disentangles the complex dependence among galaxy colour, stellar mass, and environment, showing that environment impacts galaxy colour primarily at lower masses and higher redshifts.
Findings
Galaxy colour-density relation weakens with increasing redshift.
At fixed stellar mass, environment influences galaxy colour mainly for lower masses.
Stellar mass is the primary factor determining galaxy colour, with environment playing a secondary role for low-mass galaxies.
Abstract
[Abridged] With the first 10000 spectra of the flux limited zCOSMOS sample (I<=22.5) we study the evolution of environmental effects on galaxy properties since z=1.0, and disentangle the dependence among galaxy colour, stellar mass and local density (3D local density contrast `delta', computed with the 5th nearest neighbour approach). We confirm that within a luminosity-limited sample (M_B<=-20.5-z) the fraction of red (U-B>=1) galaxies 'f_red' depends on delta at least up to z=1, with red galaxies residing mainly in high densities. This trend weakens for increasing z, and it is mirrored by the behaviour of the fraction of galaxies with D4000A break >=1.4. We also find that up to z=1 the fraction of galaxies with log(EW[OII]) >=1.15 is higher for lower delta, and also this dependence weakens for increasing z. Given the triple dependence among galaxy colours, stellar mass and delta, the…
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