Giant radio galaxies in the LOw-Frequency ARray Two-metre Sky Survey Boötes deep field

Author:

Simonte M1ORCID,Andernach H2,Brüggen M1ORCID,Schwarz D J3ORCID,Prandoni I4ORCID,Willis A G5

Affiliation:

1. Hamburger Sternwarte, University of Hamburg , Gojenbergsweg 112, D-21029 Hamburg, Germany

2. Departmento de Astronomía, DCNE, Universidad de Guanajuato , Callejón de Jalisco s/n, Guanajuato, C.P. 36023, GTO, Mexico

3. Fakultät für Physik, Universität Bielefeld , Postfach 100131, D-33501 Bielefeld, Germany

4. INAF - Istituto di Radioastronomia , via Gobetti 101, I-40129 Bologna, Italy

5. Independent Researcher , 310 Yorkton Avenue, Penticton, BC V2A 6Z8, Canada

Abstract

ABSTRACT Giant radio galaxies (GRGs) are radio galaxies that have projected linear extents of more than 700 kpc or 1 Mpc, depending on definition. We have carried out a careful visual inspection in search of GRGs of the Boötes LOw-Frequency ARray Deep Field image at 150 MHz. We identified 74 GRGs with a projected size larger than 0.7 Mpc of which 38 are larger than 1 Mpc. The resulting GRG sky density is about 2.8 (1.43) GRGs per square degree for GRGs with linear size larger than 0.7 (1) Mpc. We studied their radio properties and the accretion state of the host galaxies using deep optical and infrared survey data and determined flux densities for these GRGs from available survey images at both 54 MHz and 1.4 GHz to obtain integrated radio spectral indices. We show the location of the GRGs in the P–D diagram. The accretion mode on to the central black holes of the GRG hosts is radiatively inefficient suggesting that the central engines are not undergoing massive accretion at the time of the emission. Interestingly, 14 out of 35 GRGs for which optical spectra are available show a moderate star-formation rate (10–100 $\rm M_{\odot }\,yr^{-1}$). Based on the number density of optical galaxies taken from the Dark Energy Spectroscopic Instrument survey DR9 photometric redshift catalogue, we found no significant differences between the environments of GRGs and other radio galaxies, at least for redshift up to z = 0.7.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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