The ALHAMBRA survey : $B-$band luminosity function of quiescent and star-forming galaxies at $0.2 \leq z < 1$ by PDF analysis
C. L\'opez-Sanjuan, E. Tempel, N. Ben\'itez, A. Molino, K. Viironen,, L. A. D\'iaz-Garc\'ia, A. Fern\'andez-Soto, W. A. Santos, J. Varela, A. J., Cenarro, M. Moles, P. Arnalte-Mur, B. Ascaso, A. D. Montero-Dorta, M., Povi\'c, V. J. Mart\'inez, L. Nieves-Seoane, M. Stefanon

TL;DR
This study analyzes the evolution of the $B$-band luminosity function of quiescent and star-forming galaxies from redshift 0.2 to 1 using ALHAMBRA survey data, employing probabilistic methods to account for uncertainties and cosmic variance.
Contribution
It introduces a novel PDF-based methodology for measuring the luminosity function evolution, including covariance and cosmic variance, applied to ALHAMBRA data for the first time.
Findings
Luminosity function parameters agree with previous studies.
Significant increase in quiescent galaxy population since z=1.
Decreased luminosity density of star-forming galaxies over time.
Abstract
Our goal is to study the evolution of the band luminosity function (LF) since using ALHAMBRA data. We used the photometric redshift and the band selection magnitude probability distribution functions (PDFs) of those ALHAMBRA galaxies with 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 and the evolving Schechter…
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