VLA imaging of the XMM-LSS/VIDEO deep field at 1–2 GHz

Author:

Heywood I123ORCID,Hale C L14ORCID,Jarvis M J15ORCID,Makhathini S23,Peters J A1,Sebokolodi M L L26,Smirnov O M23

Affiliation:

1. Astrophysics, Department of Physics, University of Oxford, Keble Road, Oxford OX1 3RH, UK

2. Department of Physics and Electronics, Rhodes University, PO Box 94, Makhanda 6140, South Africa

3. South African Radio Astronomy Observatory, 2 Fir Street, Black River Park, Observatory, Cape Town 7925, South Africa

4. CSIRO Astronomy and Space Science, PO Box 1130, Bentley, WA 6102, Australia

5. Physics Department, University of the Western Cape, Private Bag X17, Bellville 7535, South Africa

6. National Radio Astronomy Observatory, PO Box 0, Soccoro, NM 87801, USA

Abstract

ABSTRACT Modern radio telescopes are routinely reaching depths where normal star-forming galaxies are the dominant observed population. Realizing the potential of radio as a tracer of star formation and black hole activity over cosmic time involves achieving such depths over representative volumes, with radio forming part of a larger multiwavelength campaign. In pursuit of this, we used the Karl G. Jansky Very Large Array (VLA) to image ∼5 deg2 of the VIDEO/XMM-LSS extragalactic deep field at 1–2 GHz. We achieve a median depth of 16 µJy beam−1 with an angular resolution of 4.5 arcsec. Comparisons with existing radio observations of XMM-LSS showcase the improved survey speed of the upgraded VLA: we cover 2.5 times the area and increase the depth by ∼20 per cent in 40 per cent of the time. Direction-dependent calibration and wide-field imaging were required to suppress the error patterns from off-axis sources of even modest brightness. We derive a catalogue containing 5762 sources from the final mosaic. Sub-band imaging provides in-band spectral indices for 3458 (60 per cent) sources, with the average spectrum becoming flatter than the canonical synchrotron slope below 1 mJy. Positional and flux density accuracy of the observations, and the differential source counts are in excellent agreement with those of existing measurements. A public release of the images and catalogue accompanies this article.

Funder

Government of Western Australia

National Science Foundation

National Aeronautics and Space Administration

Science and Technology Facilities Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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