Evolution of the galaxy luminosity function in progenitors of fossil groups
Abstract
Using the semi-analytic models based on the Millennium simulation, we trace back the evolution of the luminosity function of galaxies residing in progenitors of groups classified by the magnitude gap at redshift zero. We determine the luminosity function of galaxies within , and for galaxy groups/clusters. The bright end of the galaxy luminosity function of fossil groups shows a significant evolution with redshift, with changes in by 1-2 mag between and (for the central ), suggesting that the formation of the most luminous galaxy in a fossil group has had a significant impact on the galaxies e.g. it is formed as a result of multiple mergers of the galaxies within the last Gyr. In contrast, the slope of the faint end, , of the luminosity function shows no considerable redshift evolution and the number of dwarf galaxies in the fossil groups exhibits no evolution, unlike in non-fossil groups where it grows by towards low redshifts. In agreement with previous studies, we also show that fossil groups accumulate most of their halo mass earlier than non-fossil groups. Selecting the fossils at a redshift of 1 and tracing them to a redshift 0, we show that of the fossil groups () will lose their large magnitude gaps. However, about of fossil clusters () will retain their large gaps.
Keywords
Cite
@article{arxiv.1409.1215,
title = {Evolution of the galaxy luminosity function in progenitors of fossil groups},
author = {G. Gozaliasl and H. G. Khosroshahi and A. A. Dariush and A. Finoguenov and D. M. Z. Jassur and A. Molaeinajad},
journal= {arXiv preprint arXiv:1409.1215},
year = {2014}
}
Comments
Accepted for publication in A&A. 13 pages, 15 figures