Colors, Luminosity Function and Counts of Galaxies
Abstract
Standard models for deep galaxy counts are based on luminosity functions (LF) with relatively flat faint end (). Galaxy counts in the B--band exceed the prediction of such models by a factor of 2 to more than 5, forcing the introduction of strong luminosity and/or density evolution. Recently Marzke et al. (1994a) using the CfA redshift survey sample find that the number of galaxies in the range exceeds the extrapolation of a flat faint end LF by a factor of 2. Here we show that this steep LF substantially contributes to justify the observed blue galaxy counts without invoking strong luminosity and/or density evolution. Furthermore we show that taking into account the variation of the color as a function of the morphological types and assuming a mean value for dwarf galaxies, we reproduce well also the observed --band deep galaxy counts. This assumption is supported by the strong correlation we found between color of galaxies and their infrared absolute magnitude: galaxies become bluer with decreasing luminosity.
Keywords
Cite
@article{arxiv.astro-ph/9510131,
title = {Colors, Luminosity Function and Counts of Galaxies},
author = {P. Saracco and G. Chincarini and A. Iovino},
journal= {arXiv preprint arXiv:astro-ph/9510131},
year = {2015}
}
Comments
6 pages, TeX, 9 PostScript figures, to appear in MNRAS