Infrared-Faint Radio Sources: A Cosmological View - AGN Number Counts, the Cosmic X-Ray Background and SMBH Formation
arXiv:1104.0564 · doi:10.1051/0004-6361/201016264
Abstract
Context. Infrared Faint Radio Sources (IFRS) are extragalactic emitters clearly detected at radio wavelengths but barely detected or undetected at optical and infrared wavelengths, with 5 sigma sensitivities as low as 1 uJy. Aims. Recent SED-modelling and analysis of their radio properties shows that IFRS are consistent with a population of (potentially extremely obscured) high-redshift AGN at 3<z<6. We demonstrate some astrophysical implications of this population and compare them to predictions from models of galaxy evolution and structure formation. Methods. We compiled a list of IFRS from four deep extragalactic surveys and extrapolated the IFRS number density to a survey-independent value of (30.8 +- 15.0) per square degree. We computed the IFRS contribution to the total number of AGN in the Universe to account for the Cosmic X-ray Background. By estimating the black hole mass contained in IFRS, we present conclusions for the SMBH mass density in the early universe and compare it to relevant simulations of structure formation after the Big Bang. Results. The number density of AGN derived from the IFRS density was found to be about 310 deg^-2, which is equivalent to a SMBH mass density of the order of 10^3 M_sun Mpc^-3 in the redshift range 3<z<6. This produces an X-ray flux of 9 10^-16 W m^-2 deg^-2 in the 0.5-2.0 keV band and 3 10^-15 W m^-2 deg^-2 in the 2.0-10 keV band, in agreement with the missing unresolved components of the Cosmic X-ray Background. Concerning the problem of SMBH formation after the Big Bang we find evidence for a scenario involving both halo gas accretion and major mergers.
8 pages, 4 figures, accepted for publication in A&A
References in corpus (14)
- The synthesis of the cosmic X-ray background in the Chandra and XMM-Newton era
- The VLA-COSMOS Survey: II. Source Catalog of the Large Project
- The Radio-Loud Fraction of Quasars is a Strong Function of Redshift and Optical Luminosity
- The Massive Hosts of Radio Galaxies Across Cosmic Time
- Deep ATLAS radio observations of the CDFS-SWIRE field
- The XMM-Newton wide-field survey in the COSMOS field II: X-ray data and the logN-logS
- The Deep SWIRE Field I. 20cm Continuum Radio Observations: A Crowded Sky
- Mass Functions of the Active Black Holes in Distant Quasars from the Sloan Digital Sky Survey Data Release 3
- High redshift quasars in the COSMOS survey: the space density of z>3 X-ray selected QSOs
- The XMM-Newton survey of the ELAIS-S1 field. I: Number counts, angular correlation function and X-ray spectral properties
- High spatial resolution T-ReCS mid-infrared imaging of Luminous Infrared Galaxies
- VLBI detection of an Infrared-Faint Radio Source
- Deep 610-MHz Giant Metrewave Radio Telescope observations of the Spitzer extragalactic First Look Survey field - III. The radio properties of Infrared-Faint Radio Sources
- The first VLBI image of an Infrared-Faint Radio Source
Cited by in corpus (21)
- Compact steep-spectrum and peaked-spectrum radio sources
- Infrared-Faint Radio Sources: A New Population of High-redshift Radio Galaxies
- Red but not dead : Unveiling the Star-forming Far-infrared Spectral Energy Distribution of SpARCS Brightest Cluster Galaxies at 0 < z < 1.8
- Finding New High-Redshift Quasars by Asking the Neighbours
- The Australia Telescope Large Area Survey: 2.3 GHz observations of ELAIS-S1 and CDF-S
- Nowhere to Hide: Radio-faint AGN in the GOODS-N field. II. Multi-wavelength AGN selection techniques and host galaxy properties
- Infrared-Faint Radio Sources are at high redshifts
- The Apertif science verification campaign - Characteristics of polarised radio sources
- The ATLAS 9.0 GHz Survey of the Extended Chandra Deep Field South: The Faint 9.0 GHz Radio Population
- The radio spectral energy distribution of infrared-faint radio sources
- The Redshift Distribution of Infrared-Faint Radio Sources
- On the nature of infrared-faint radio sources in the SXDF and VLA-VVDS fields
- Infrared-Faint Radio Sources in the SERVS deep fields: Pinpointing AGNs at high redshift
- Radio Continuum Sources behind the Large Magellanic Cloud
- Active galactic nuclei cores in infrared-faint radio sources: Very long baseline interferometry observations using the Very Long Baseline Array
- X-ray stacking of Lyman break galaxies in the 4\,Ms CDF-S - X-ray luminosities and star formation rates across cosmic time
- Infrared-faint radio sources remain undetected at far-infrared wavelengths. Deep photometric observations using the Herschel Space Observatory
- Optically Faint Radio Sources: Reborn AGN?
- Can Superconducting Cosmic Strings Piercing Seed Black Holes Generate Supermassive Black Holes in the Early Universe?
- From Nearby Low Luminosity AGN to High Redshift Radio Galaxies: Science Interests with SKA
- Multiwavelength Properties of Infrared-Faint Radio Sources Based on Spectral Energy Distribution Analysis