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A&A 457, 517-529 (2006)
DOI: 10.1051/0004-6361:20054273
The ATESP 5 GHz radio survey
I. Source counts and spectral index properties of the faint radio population
I. Prandoni1, P. Parma1, M. H. Wieringa2, H. R. de Ruiter3, 1, L. Gregorini4, 1, A. Mignano5, 1, G. Vettolani6, 1 and R. D. Ekers21 INAF - Istituto di Radioastronomia, via Gobetti 101, 40129 Bologna, Italy
e-mail: prandoni@ira.inaf.it
2 CSIRO Australia Telescope National Facility, PO Box 76, Epping NSW2121, Australia
3 INAF - Osservatorio Astronomico di Bologna, via Ranzani 1, 40126 Bologna, Italy
4 Dipartimento di Fisica, Università di Bologna, via Irnerio 46, 40126 Bologna, Italy
5 Dipartimento di Astronomia, Università di Bologna, via Ranzani 1, 40126 Bologna, Italy
6 INAF, Viale del Parco Mellini 84, 00136 Roma, Italy
(Received 29 September 2005 / Accepted 4 July 2006)
Abstract
Context.The nature and evolutionary properties of the faint radio population,
responsible for the steepening observed in the 1.4 GHz source counts
below 1 milliJy, are not yet entirely clear. Radio spectral
indices may help to constrain the origin of the radio emission in such faint
radio sources and may be fundamental in understanding eventual links to the
optical light.
Aims.We study the spectral index behaviour of sources that were found in the
1.4 GHz ATESP survey (Prandoni et al. 2000a, A&AS, 146, 31; 2000b, A&AS, 146, 41),
considering that the ATESP is
one of the most extensive sub-mJy surveys existing at present.
Methods.Using the Australia Telescope Compact Array we observed at 5 GHz part
of the region covered by the sub-mJy ATESP survey.
In particular we imaged a one square degree area for which deep optical imaging in UBVRIJK is
available. In this paper we present the
5 GHz survey and source catalogue,
we derive the 5 GHz source counts and we discuss the 1.4-5 GHz spectral
index properties of the ATESP sources. The analysis of the
optical properties of the sample will be the subject of a following paper.
Results.The 5 GHz survey has produced a catalogue of 111 radio sources, complete down to a (
) limit
mJy.
We take advantage of the better spatial resolution at 5 GHz (~
compared to ~
at 1.4 GHz) to infer radio source structures
and sizes. The 5 GHz source counts derived by the present sample are consistent with
those reported in the literature, but improve significantly the
statistics in the flux range
mJy.
The ATESP sources show a flattening of the 1.4-5 GHz spectral index
with decreasing flux density, which is particularly significant for the
5 GHz selected sample. Such a flattening confirm previous results coming from
smaller samples and is consistent with a flattening of
the 5 GHz source counts occurring at fluxes
0.5 mJy.
Key words: surveys -- radio continuum: general -- methods: data analysis -- catalogs -- galaxies: general -- galaxies: evolution
© ESO 2006
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