English

Radio properties of high-redshift galaxies at $z \geq 1$

Astrophysics of Galaxies 2024-02-06 v1

Abstract

Study of high-redshift radio galaxies (HzRGs) can shed light on the active galactic nuclei (AGNs) evolution in massive elliptical galaxies. The vast majority of observed high-redshift AGNs are quasars, and there are very few radio galaxies at redshifts z>3z>3. We present the radio properties of 173 sources optically identified with radio galaxies at z1z\geqslant1 with flux densities S1.420S_{1.4}\geqslant20 mJy. Literature data were collected for compilation of broadband radio spectra, estimation of radio variability, radio luminosity, and radio loudness. Almost 60% of the galaxies have steep or ultra-steep radio spectra; 22% have flat, inverted, upturn, and complex spectral shapes, and 18% have peaked spectra (PS). The majority of the PS sources in the sample (20/31) are megahertz-peaked spectrum sources candidates, i.e. possibly very young and compact radio galaxies. The median values of the variability indices at 11 and 5 GHz are VS11=0.14V_{S_{11}}=0.14 and VS5=0.13V_{S_{5}}=0.13, which generally indicates a weak or moderate character of the long-term variability of the studied galaxies. The typical radio luminosity and radio loudness are L5=1043L_{5}=10^{43} - 104410^{44} erg*s1^{-1} and logR=3\log R=3 - 44 respectively. We have found less prominent features of the bright compact radio cores for our sample compared to high-redshift quasars at z3z\geq3. The variety of the obtained radio properties shows the different conditions for the formation of radio emission sources in galaxies.

Keywords

Cite

@article{arxiv.2402.02283,
  title  = {Radio properties of high-redshift galaxies at $z \geq 1$},
  author = {M. Khabibullina and A. Mikhailov and Yu. Sotnikova and T. Mufakharov and M. Mingaliev and A. Kudryashova and N. Bursov and V. Stolyarov and R. Udovitskij},
  journal= {arXiv preprint arXiv:2402.02283},
  year   = {2024}
}