The Nature of the Faint Low-Frequency Radio Source Population
Abstract
We present a multi-wavelength study into the nature of faint radio sources in a deep radio image with the Giant Meterwave Radio Telescope at 612\,MHz covering 1.2 deg of the ELAIS N1 region. We detect 2800 sources above 50~Jy\,beam. By matching to multi-wavelength data we obtain a redshift estimate for 63\%, with 29\% based on spectroscopy. For 1526 of the sources with redshifts we use radio and X-ray luminosity, optical spectroscopy, mid-infrared colors, and 24m and IR to radio flux ratios to search for the presence of an AGN. The analysis reveals a rapid change in the population as flux density decreases from 500\,Jy to 100\,Jy. We find that 80.3\% of the objects show no evidence of AGN and have multi-wavelength properties consistent with radio emission from star forming galaxies (SFG). We classify 11.4\% as Radio Quiet (RQ) AGN and the remaining 8.3\% as Radio Loud (RL) AGN. The redshift of all populations extends to with a median of 1. The median radio and far-IR luminosity increases systematically from SFG, to RQ AGN and RL AGN. The median for SFG, is slightly below that for RQ AGN, , and both differ substantially from the value for RL AGN of . However, SFG and RQ AGN show no significant difference in far-IR/radio ratios and have statistically indistinguishable star formation rates inferred from radio and far-IR luminosities. We conclude that radio emission from host galaxies of RQ AGN in this flux density regime result primarily from star formation activity.
Keywords
Cite
@article{arxiv.1702.04962,
title = {The Nature of the Faint Low-Frequency Radio Source Population},
author = {E. F. Ocran and A. R. Taylor and M. Vaccari and D. A. Green},
journal= {arXiv preprint arXiv:1702.04962},
year = {2017}
}
Comments
15 pages, 15 figures and 6 tables. Accepted for publication in MNRAS