English

Radio AGN selection in LoTSS DR2

Astrophysics of Galaxies 2025-04-15 v1

Abstract

The wide-area component of the LOFAR Two-Metre Sky Survey (LoTSS) is currently the largest radio survey ever carried out, and a large fraction of the 4.5 million radio sources it contains have been optically identified with galaxies or quasars with spectroscopic or photometric redshifts. Identification of radio-luminous AGN from this LoTSS source catalogue is not only important from the point of view of understanding the accretion history of the universe, but also enables a wide range of other science. However, at present the vast majority of the optical identifications lack spectroscopic information or well-sampled spectral energy distributions. We show that colour and absolute magnitude information from the Wide-Field Infrared Survey Explorer (WISE) allows for the robust and efficient selection of radio AGN candidates, generating a radio AGN candidate sample of around 600,000 objects with flux density >1.1> 1.1 mJy, spanning 144-MHz luminosities between 102110^{21} and 102910^{29} W Hz1^{-1}. We use the catalogue to constrain the total sky density of radio-luminous AGN and the evolution of their luminosity function between z=0z=0 and z1z\approx 1, and show that the typical mass of their host galaxies, around 1011M10^{11} M_\odot, is essentially independent of radio luminosity above around L1441024L_{144} \approx 10^{24} W Hz1^{-1}. Combining with Very Large Array Sky Survey (VLASS) data, we show that the core prominences, radio spectral indices and variability of extended sources from the sample are qualitatively consistent with the expectations from unified models. A catalogue of the radio AGN candidates is released with this paper.

Keywords

Cite

@article{arxiv.2504.09303,
  title  = {Radio AGN selection in LoTSS DR2},
  author = {M. J. Hardcastle and J. C. S. Pierce and K. J. Duncan and G. Gürkan and Y. Gong and M. A. Horton and B. Mingo and H. J. A. Röttgering and D. J. B. Smith},
  journal= {arXiv preprint arXiv:2504.09303},
  year   = {2025}
}

Comments

23 pages, accepted for publication in MNRAS

R2 v1 2026-06-28T22:56:05.717Z