{"@type": "dcat:Dataset", "accessLevel": "public", "bureauCode": ["026:00"], "contactPoint": {"@type": "vcard:Contact", "fn": "HEASARC Help Desk", "hasEmail": "mailto:andrew.ptak@nasa.gov"}, "description": "Using a deep Australia Telescope Compact Array (ATCA) radio survey covering an area of ~3 deg&lt;sup&gt;2&lt;/sup&gt; to a 4-sigma sensitivity of &gt;= 100 &micro;Jy (&micro;Jy) at 1.4 GHz, the authors study the nature of faint radio galaxies. The region, 2 degrees in diameter and centered on RA and Dec (J2000.0) of 1&lt;sup&gt;h&lt;/sup&gt; 14&lt;sup&gt;m&lt;/sup&gt; 12.16&lt;sup&gt;s&lt;/sup&gt;, -45&lt;sup&gt;o&lt;/sup&gt; 44&#39; 08.0&quot; (Galactic latitude of -71&lt;sup&gt;o&lt;/sup&gt;), is known as the Phoenix Deep Field. About 50% of the detected radio sources are identified with an optical counterpart revealed by CCD photometry to m&lt;sub&gt;R&lt;/sub&gt; = 22.5 magnitudes. Near-infrared (K-band) data are also available for a selected sample of the radio sources, while spectroscopic observations have been carried out for about 40% of the optically identified sample. These provide redshifts and information on the stellar content. Emission-line ratios imply that most of the emission-line sources are star-forming galaxies, with a small contribution (~ 10%) from Seyfert 1/Seyfert 2 type objects. The authors also find a significant number of absorption-line systems, likely to be ellipticals. These dominate at high flux densities ( &gt; 1 mJy) but are also found at sub-mJy levels. Using the Balmer decrement, they find a visual extinction A&lt;sub&gt;V&lt;/sub&gt; = 1.0 for the star-forming faint radio sources. This moderate reddening is consistent with the (V - R) and (R - K) colors of the optically identified sources. For emission-line galaxies, there is a correlation between the radio power and the H-alpha luminosity, in agreement with the result of Benn et al. (1993, MNRAS, 263, 98). This suggests that the radio emission of starburst radio galaxies is a good indicator of star formation activity. When calculating luminosities, the authors assume a cosmology with a Hubble constant H&lt;sub&gt;0&lt;/sub&gt; of 50 km s&lt;sup&gt;-1&lt;/sup&gt; Mpc&lt;sup&gt;-1&lt;/sup&gt; and a deceleration parameter q&lt;sub&gt;0&lt;/sub&gt; of 0.5. This table was created by the HEASARC in June 2013 based on an electronic version of Table 1 from the reference paper, which details the photometric (optical and near-infrared), radio, spectroscopic and intrinsic properties of the faint radio sources in the PDS with established redshifts, which was obtained from the CDS web site (their catalog J/MNRAS/306/708 file table1.dat). This is a service provided by NASA HEASARC .", "distribution": [{"@type": "dcat:Distribution", "downloadURL": "https://heasarc.gsfc.nasa.gov/W3Browse/all/pdsoid.html", "format": "HTML", "mediaType": "text/html"}, {"@type": "dcat:Distribution", "downloadURL": "https://heasarc.gsfc.nasa.gov/xamin/vo/cone?showoffsets&table=pdsoid&", "format": "BIN", "mediaType": "application/octet-stream"}], "identifier": "ivo://nasa.heasarc/pdsoid", "keyword": ["__"], "landingPage": "ivo://nasa.heasarc/pdsoid", "license": "https://www.usa.gov/government-works", "modified": "2026-04-06", "programCode": ["026:000"], "publisher": {"@type": "org:Organization", "name": "High Energy Astrophysics Science Archive Research Center"}, "theme": ["Astrophysics"], "title": "Phoenix Deep Survey Optical and Near-Infrared Counterparts Catalog"}