Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/5306
Title: J021659-044920: a relic giant radio galaxy at z similar to 1.3
Authors: TAMHANE, PRATHAMESH
Wadadekar, Y.
Basu, A.
Singh, V.
Ishwara-Chandra, C. H.
Beelen, A.
Sirothia, S.
Dept. of Physics
Keywords: Galaxies: active
Galaxies: individual: J021659-044920
Galaxies: jets
Radio continuum: galaxies
X-rays: galaxies
2015
Issue Date: Nov-2015
Publisher: Oxford University Press
Citation: Monthly Notices of the Royal Astronomical Society, 453(3), 2438-2446.
Abstract: We report the discovery of a relic Giant Radio Galaxy (GRG) J021659-044920 at redshift z ∼ 1.3 that exhibits large-scale extended, nearly co-spatial, radio and X-ray emission from radio lobes, but no detection of Active Galactic Nuclei core, jets and hotspots. The total angular extent of the GRG at the observed frame 0.325 GHz, using Giant Metrewave Radio Telescope observations is found to be ∼2.4 arcmin, that corresponds to a total projected linear size of ∼1.2 Mpc. The integrated radio spectrum between 0.240 and 1.4 GHz shows high spectral curvature (⁠α1.4GHz0.610GHz – α0.325GHz0.240GHz > 1.19) with sharp steepening above 0.325 GHz, consistent with relic radio emission that is ∼8 × 106 yr old. The radio spectral index map between observed frame 0.325 and 1.4 GHz for the two lobes varies from 1.4 to 2.5 with the steepening trend from outer-end to inner-end, indicating backflow of plasma in the lobes. The extended X-ray emission characterized by an absorbed power law with photon index ∼1.86 favours inverse-Compton scattering of the Cosmic Microwave Background (ICCMB) photons as the plausible origin. Using both X-ray and radio fluxes under the assumption of ICCMB we estimate the magnetic field in the lobes to be 3.3 μG. The magnetic field estimate based on energy equipartition is ∼3.5 μG. Our work presents a case study of a rare example of a GRG caught in dying phase in the distant Universe.
URI: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/5306
https://doi.org/10.1093/mnras/stv1768
ISSN: 0035-8711
1365-2966
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