English

Three little radio galaxies in the early Universe

Astrophysics of Galaxies 2019-10-25 v1

Abstract

Volonteri et al. (2011) found that the number of radio-loud quasars above redshift 4 calculated from the luminosity function (based upon Swift/BAT observations) is much smaller than the number estimated from the known high-redshift beamed sources, blazars, assuming that for every beamed source with a Lorentz factor of Γ\Gamma, statistically 2Γ22 \Gamma^2 non-beamed sources should exist. To explain the missing misaligned (non-beamed) population of high-redshift sources, they proposed various explanations, involving heavy optical obscuration and significantly different Lorentz factors at early cosmological epochs. Our EVN observations targeting high-redshift (z>4z>4) blazar candidates revealed 3 sources not showing relativistic beaming, but rather kpc-scale double structures. These three sources have significant radio emission resolved out with the EVN, while they are compact on 510\sim 5-10 arcsec scale. Our dual-frequency (1.51.5 and 55 GHz) e-MERLIN observations of these three sources revealed a rich morphology, bending jets, and hot spots with possible sites of interaction between the jets and the surrounding medium at intermediate scales.

Keywords

Cite

@article{arxiv.1902.07272,
  title  = {Three little radio galaxies in the early Universe},
  author = {K. É. Gabányi and S. Frey and Z. Paragi and H. Cao and T. An and L. I. Gurvits and T. Sbarrato and K. Perger and K. Rozgonyi and Gy. Mező},
  journal= {arXiv preprint arXiv:1902.07272},
  year   = {2019}
}

Comments

6 pages, 3 figures, 1 table, accepted for the Proceedings of the 14th European VLBI Network Symposium & Users Meeting