The ALHAMBRA survey : B-band luminosity function of quiescent and star-forming galaxies at 0.2 ≤ z < 1 by PDF analysis

Abstract

Our goal is to study the evolution of the B-band luminosity function (LF) since z=1 using ALHAMBRA data. We used the photometric redshift and the I-band selection magnitude probability distribution functions (PDFs) of those ALHAMBRA galaxies with I≤24 mag to compute the posterior LF. We statistically studied quiescent and star-forming galaxies using the template information encoded in the PDFs. The LF covariance matrix in redshift-magnitude-galaxy type space was computed, including the cosmic variance. That was estimated from the intrinsic dispersion of the LF measurements in the 48 ALHAMBRA sub-fields. The uncertainty due to the photometric redshift prior is also included in our analysis. We modelled the LF with a redshift-dependent Schechter function affected by the same selection effects than the data. The measured ALHAMBRA LF at 0.2≤ z<1 and the evolving Schechter parameters both for quiescent and star-forming galaxies agree with previous results in the literature. The estimated redshift evolution of MB* Qz is Q SF=-1.030.08 and Q Q=-0.800.08, and of φ* Pz is P SF=-0.010.03 and P Q=-0.410.05. The measured faint-end slopes are α SF=-1.290.02 and α Q=-0.530.04. We find a significant population of faint quiescent galaxies, modelled by a second Schechter function with slope β=-1.310.11. We find a factor 2.550.14 decrease in the luminosity density jB of star-forming galaxies, and a factor 1.250.16 increase in the jB of quiescent ones since z=1, confirming the continuous build-up of the quiescent population with cosmic time. The contribution of the faint quiescent population to jB increases from 3% at z=1 to 6% at z=0. The developed methodology will be applied to future multi-filter surveys such as J-PAS.

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