Radiogalaxies in the Sloan Digital Sky Survey: spectral index-environment correlations
arXiv:1003.4263 · doi:10.1111/j.1365-2966.2010.16685.x
Abstract
We analyze optical and radio properties of radiogalaxies detected in the Sloan Digital Sky Survey (SDSS). The sample of radio sources are selected from the catalogue of Kimball & Ivezić (2008) with flux densities at 325, 1400 and 4850 MHz, using WENSS, NVSS and GB6 radio surveys and from flux measurements at 74 MHz taken from VLA Low-frequency Sky Survey \citep{cohen}. We study radiogalaxy spectral properties using radio colour-colour diagrams and find that our sample follows a single power law from 74 to 4850 MHz. The spectral index vs. spectroscopic redshift relation () is not significant for our sample of radio sources. We analyze a subsample of radio sources associated with clusters of galaxies identified from the maxBCG catalogue and find that about 40% of radio sources with ultra steep spectra (USS, , where ) are associated with galaxy clusters or groups of galaxies. We construct a Hubble diagram of USS radio sources in the optical band up to .8 and compare our results with those for normal galaxies selected from different optical surveys and find that USS radio sources are around as luminous as the central galaxies in the maxBCG cluster sample and typically more than 4 magnitudes brighter than normal galaxies at .3. We study correlations between spectral index, richness and luminosity of clusters associated with radio sources. We find that USS at low redshift are rare, most of them reside in regions of unusually high ambient density, such of those found in rich cluster of galaxies. Our results also suggest that clusters of galaxies associated with steeper than the average spectra have higher richness counts and are populated by luminous galaxies in comparison with those environments associated to radio sources with flatter than the average spectra. A plausible explanation for our results is that radio emission is more pressure confined in higher gas density environments such as those found in rich clusters of galaxies and as a consequence radio lobes in rich galaxy clusters will expand adiabatically and lose energy via synchrotron and inverse Compton losses, resulting in a steeper radio spectra.
13 pages, 14 figures; accepted for publication in Monthly Notices of the Royal Astronomical Society Main Journal.
References in corpus (11)
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- On the prevalence of radio-loud AGN in brightest cluster galaxies: implications for AGN heating of cooling flows
- A Unified Catalog of Radio Objects Detected by NVSS, FIRST, WENSS, GB6, and SDSS
- A Galaxy Photometric Redshift Catalog for the Sloan Digital Sky Survey Data Release 6
- The Spiderweb galaxy: a forming massive cluster galaxy at z~2
- A search for distant radio galaxies from SUMSS and NVSS: III. radio spectral energy distributions and the z-alpha correlation
- VIMOS-VLT spectroscopy of the giant Ly-alpha nebulae associated with three z~2.5 radio galaxies
- Low-power radio galaxy environments in the Subaru/XMM-Newton Deep Field at z~0.5
- The 6C** sample of steep-spectrum radio sources: I - Radio data, near-infrared imaging and optical spectroscopy
- A new search for distant radio galaxies in the southern hemisphere - I. Sample definition and radio properties
- Evolution of environment dependent galaxy properties in the Sloan Digital Sky Survey
Cited by in corpus (19)
- Rapidly growing black holes and host galaxies in the distant Universe from the Herschel Radio Galaxy Evolution Project
- A search for ionized jets towards massive young stellar objects
- Radio Continuum Surveys with Square Kilometre Array Pathfinders
- A combined low-radio frequency/X-ray study of galaxy groups I. Giant Metrewave Radio Telescope observations at 235 MHz and 610 MHz
- Winds as the origin of radio emission in radio-quiet extremely red quasars
- Deep Low-Frequency Radio Observations of the NOAO Bootes Field: I. Data Reduction and Catalog Construction
- T-RaMiSu: The Two-meter Radio Mini Survey I. The Bootes Field
- Multiwavelength characterization of faint Ultra Steep Spectrum radio sources : A search for high-redshift radio galaxies
- A Wide and Deep Exploration of Radio Galaxies with Subaru HSC (WERGS). II. Physical Properties derived from the SED Fitting with Optical, Infrared, and Radio Data
- The Complete Local Volume Groups Sample - II. A study of the Central Radio Galaxies in the HighRichness Sub-sample
- The Complete Local Volume Groups Sample -- III. Characteristics of group central radio galaxies in the Local Universe
- Ultra Steep Spectrum radio sources in the Lockman Hole: SERVS identifications and redshift distribution at the faintest radio fluxes
- Radio Spectra of Luminous, Heavily Obscured WISE-NVSS Selected Quasars
- Host galaxy properties and environment of obscured and unobscured X-ray selected Active Galactic Nuclei in the COSMOS survey
- The morphological classification of distant radio galaxies explored with three-dimensional simulations
- On the injection spectrum of relativistic electrons in high-redshift radio galaxies
- Environment of obscured and unobscured AGNs in the Extended Chandra Deep Field South
- The XXL Survey: XXXIX. Polarised radio sources in the XXL-South field
- Properties of Compact Faint Radio Sources as a Function of Angular Size from Stacking