Saripalli, L. ; Subrahmanyan, R. ; Thorat, K. ; Ekers, R. D. ; Hunstead, R. W. ; Johnston, H. M. ; Sadler, E. M. (2012) ATLBS extended source sample: the evolution in radio source morphology with flux density The Astrophysical Journal Supplement Series, 199 (2). Article ID 27-13 pages. ISSN 0067-0049
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Official URL: http://iopscience.iop.org/article/10.1088/0067-004...
Related URL: http://dx.doi.org/10.1088/0067-0049/199/2/27
Abstract
Based on the Australia Telescope Low Brightness Survey (ATLBS) we present a sample of extended radio sources and derive morphological properties of faint radio sources. One hundred nineteen radio galaxies form the ATLBS Extended Source Sample (ATLBS-ESS) consisting of all sources exceeding 30'' in extent and integrated flux densities exceeding 1 mJy. We give structural details along with information on galaxy identifications and source classifications. The ATLBS-ESS, unlike samples with higher flux-density limits, has almost equal fractions of FR-I and FR-II radio galaxies, with a large fraction of the FR-I population exhibiting 3C31-type structures. Significant asymmetry in lobe extents appears to be a common occurrence in the ATLBS-ESS FR-I sources compared with FR-II sources. We present a sample of 22 FR-Is at z > 0.5 with good structural information. The detection of several giant radio sources, with size exceeding 0.7 Mpc, at z > 1 suggests that giant radio sources are not less common at high redshifts. The ESS also includes a sample of 28 restarted radio galaxies. The relative abundance of dying and restarting sources is indicative of a model where radio sources undergo episodic activity in which an active phase is followed by a brief dying phase that terminates with restarting of the central activity; in any massive elliptical a few such activity cycles wherein adjacent events blend may constitute the lifetime of a radio source and such bursts of blended activity cycles may be repeated over the age of the host. The ATLBS-ESS includes a 2 Mpc giant radio galaxy with the lowest surface brightness lobes known to date.
Item Type: | Article |
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Source: | Copyright of this article belongs to American Astronomical Society. |
Keywords: | Galaxies: Active; Radio Continuum: General; Surveys |
ID Code: | 114304 |
Deposited On: | 21 May 2018 06:13 |
Last Modified: | 21 May 2018 06:13 |
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