The cosmological consequence of an obscured AGN population on the radiation efficiency
arXiv:0810.3920 · doi:10.1088/0004-637X/692/2/964
Abstract
In light of recent indications for a large population of obscured active galactic nuclei (AGNs), we revisit the mean radiation efficiency from accretion onto supermassive black holes (SMBHs), epsilon, applying a bayesian approach. We use the integrated comoving energy density emitted by AGNs and compare it to the mass density of local SMBHs. When considering only optically-selected unobscured AGNs, we derive log_10[epsilon]=-1.77+0.16-0.11 or epsilon=1.7+0.8-0.4%. Using the AGNs selected using hard X-rays, which include unabsorbed and Compton-thin absorbed AGNs, we find log_10[epsilon]=-1.20+0.15-0.10 or epsilon=6.4+2.6-1.3%. Using optically-selected AGNs, and correcting for the obscured population, we inferr log_10[epsilon]=-1.17+0.11-0.08 or epsilon=6.7+1.9-1.1%, which we consider our best estimate. We also repeat this calculation for intrinsically luminous AGNs (M_B<-23, quasars), comparing to the SMBH mass density in local elliptical galaxies, and find log_10[epsilon]=-1.27+0.15-0.11 or epsilon=5.4+2.2-1.2%. We discuss how our results can be used to estimate the mean spin of accreting SMBHs, both assuming the standard thin-disk model of accretion onto black holes and also comparing to more recent simulations. Our results can rule out maximally rotating SMBHs (<a>=0.998 Gm_bh/c^2) at the >=98% confidence level, as well as high rotation values (<a> >=0.9 Gm_bh/c^2) with >=92% confidence. Our preferred values of <a> are ~0.25-0.60 Gm_bh/c^2, although even these might be overestimated. Hence, we find that on average, SMBHs are not rapidly spinning during accretion. Finally, using an independent measurement of Eddington ratios, we estimate the SMBH e-folding time for the brightest AGNs (quasars) to be <tau> =100+151-60 Myr.
ApJ, accepted. 11 pages, 3 figures
References in corpus (19)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- The synthesis of the cosmic X-ray background in the Chandra and XMM-Newton era
- A synthesis model for AGN evolution: supermassive black holes growth and feedback modes
- Space density of optically-selected type 2 quasars
- The Evolution of Black Hole Mass and Spin in Active Galactic Nuclei
- The Luminosity Function of X-ray Selected Active Galactic Nuclei: Evolution of Supermassive Black Holes at High Redshift
- Optical spectroscopy and X-ray detections of a sample of quasars and AGN selected in the mid-infrared from two Spitzer wide-area surveys
- Chandra and Spitzer unveil heavily obscured quasars in the SWIRE/Chandra Survey
- Spitzer Power-law AGN Candidates in the Chandra Deep Field-North
- The Evolution of Obscuration in AGN
- The evolution of misaligned accretion discs and spinning black holes
- A population of high-redshift type-2 quasars-I. Selection Criteria and Optical Spectra
- Why X-ray--Selected AGN Appear Optically Dull
- Evidence for Rapidly Spinning Black Holes in Quasars
- Where is the Radiation Edge in Magnetized Black Hole Accretion discs?
- Toward precise constraints on growth of massive black holes
- Mid-Infrared Spectroscopic Properties of Ultra-Luminous Infrared Quasars
- Evidence for a large fraction of Compton-thick quasars at high redshift
- Mid-infrared spectroscopy of high-redshift obscured quasars
Cited by in corpus (24)
- Cosmological simulations of the growth of supermassive black holes and feedback from active galactic nuclei: method and tests
- Obscured Active Galactic Nuclei
- Grand unification of AGN activity in the LambdaCDM cosmology
- Feedback from central black holes in elliptical galaxies. I: models with either radiative or mechanical feedback but not both
- Incidence of WISE-Selected Obscured AGNs in Major Mergers and Interactions from the SDSS
- Major Galaxy Mergers and the Growth of Supermassive Black Holes in Quasars
- The Spitzer mid-infrared AGN survey. I - optical and near-infrared spectroscopy of candidate obscured and normal AGN selected in the mid-infrared
- The Spitzer mid-infrared AGN survey. II-the demographics and cosmic evolution of the AGN population
- Evidence for a maximum jet efficiency for the most powerful radio galaxies
- Observational constraints on the spin of the most massive black holes from radio observations
- Constraints on the black hole spin in the quasar SDSS J094533.99+100950.1
- Host galaxy-active galactic nucleus alignments in the SDSS-DR7
- The Radio Properties of Type 2 Quasars
- Cosmological Evolution of Supermassive Black Holes. II. Evidence for Downsizing of Spin Evolution
- On the Feedback Efficiency of Active Galactic Nuclei
- The first Super Massive Black Holes: indications from models for future observations
- Non-thermal Processes in Black-Hole-Jet Magnetospheres
- Black-hole masses, accretion rates and hot- and cold-mode accretion in radio galaxies at z~1
- Integral field spectroscopy of type-II QSOs at z=0.3-0.4
- Observational evidence that positive and negative AGN feedback depends on galaxy mass and jet power
- FR II Quasars: Infrared Properties, Star Formation Rates, and Extended Ionized Gas
- NuSTAR and Keck Observations of Heavily Obscured Quasars Selected by WISE
- Evidence for cosmic evolution in the spin of the most massive black holes
- Large-Scale Outflows from AGN: a link between central black holes and galaxies