4.7 Article

Deep observations of the Super-CLASS supercluster at 325 MHz with the GMRT: the low-frequency source catalogue

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 462, Issue 1, Pages 917-940

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stw1734

Keywords

surveys; radio continuum: general

Funding

  1. NASA
  2. United Kingdom Science and Technology Facilities Council (STFC)
  3. European Research Council [ERC-2012-StG-307215 LODESTONE]
  4. European Research Council through EC [280127]
  5. STFC [ST/I005129/1]
  6. Science and Technology Facilities Council [ST/P000827/1, ST/M000907/1, ST/I005129/1, 1238642, ST/L000768/1, ST/J001414/1] Funding Source: researchfish
  7. STFC [ST/P000827/1, ST/L000768/1, ST/I005129/1, ST/M000907/1, ST/J001414/1] Funding Source: UKRI

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We present the results of 325 MHz Giant Metrewave Radio Telescope observations of a supercluster field, known to contain five Abell clusters at redshift z similar to 0.2. We achieve a nominal sensitivity of 34 mu Jy beam(-1) towards the phase centre. We compile a catalogue of 3257 sources with flux densities in the range 183 mu Jy-1.5 Jy within the entire similar to 6.5 deg(2) field of view. Subsequently, we use available survey data at other frequencies to derive the spectral index distribution for a sub-sample of these sources, recovering two distinct populations - a dominant population which exhibit spectral index trends typical of steep-spectrum synchrotron emission, and a smaller population of sources with typically flat or rising spectra. We identify a number of sources with ultrasteep spectra or rising spectra for further analysis, finding two candidate high-redshift radio galaxies and three gigahertz-peaked-spectrum radio sources. Finally, we derive the Euclidean-normalized differential source counts using the catalogue compiled in this work, for sources with flux densities in excess of 223 mu Jy. Our differential source counts are consistent with both previous observations at this frequency and models of the low-frequency source population. These represent the deepest source counts yet derived at 325 MHz. Our source counts exhibit the well-known flattening at mJy flux densities, consistent with an emerging population of star-forming galaxies; we also find marginal evidence of a downturn at flux densities below 308 mu Jy, a feature so far only seen at 1.4 GHz.

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