The evolution of radio sources in the UKIDSS-DXS XMM-LSS field
Abstract
We investigate the cosmic evolution of low luminosity () radio sources in the XMM Large Scale Structure survey field (XMM-LSS). We match low frequency selected (610~MHz) radio sources in the XMM-LSS field with near infrared -band observations over the same field from the UKIRT Infrared Deep Sky Survey. We use both the mean statistic and the radio luminosity function of these matched sources to quantify the evolution of the co-moving space density of the low luminosity radio sources in our sample. Our results indicate that the low luminosity sources evolve differently to their high luminosity counterparts out to a redshift of z0.8. The derived luminosity function is consistent with an increase in the co-moving space density of low luminosity sources by a factor of 1.5 at z=0.8. We show that the use of the diagram for the radio source population, although coarser than a full photometric redshift analysis, produces consistent results with previous studies using band photometry. This offers a promising method for conducting similar analyses over the whole sky with future near- and mid-infrared surveys.
Cite
@article{arxiv.1012.3020,
title = {The evolution of radio sources in the UKIDSS-DXS XMM-LSS field},
author = {Kim McAlpine and Matt J. Jarvis},
journal= {arXiv preprint arXiv:1012.3020},
year = {2015}
}
Comments
8 pages, 5 figures, 2 tables, accepted for publication in MNRAS