Quasars Are Not Light-Bulbs: Testing Models of Quasar Lifetimes with the Observed Eddington Ratio Distribution
arXiv:0809.3789 · doi:10.1088/0004-637X/698/2/1550
Abstract
We use the observed distribution of Eddington ratios as a function of supermassive black hole (BH) mass to constrain models of AGN lifetimes and lightcurves. Given the observed AGN luminosity function, a model for AGN lifetimes (time above a given luminosity) translates directly to a predicted Eddington ratio distribution. Models for self-regulated BH growth, in which feedback produces a 'blowout' decay phase after some peak luminosity (shutting down accretion) make specific predictions for the lifetimes distinct from those expected if AGN are simply gas starved (without feedback) and very different from simple phenomenological 'light bulb' models. Present observations of the Eddington ratio distribution, spanning 5 decades in Eddington ratio, 3 in BH mass, and redshifts z=0-1, agree with the predictions of self-regulated models, and rule out 'light-bulb', pure exponential, and gas starvation models at high significance. We compare the Eddington ratio distributions at fixed BH mass and fixed luminosity (both are consistent, but the latter are much less constraining). We present empirical fits to the lifetime distribution and show how the Eddington ratio distributions place tight limits on AGN lifetimes at various luminosities. We use this to constrain the shape of the typical AGN lightcurve, and provide simple analytic fits. Given independent constraints on episodic lifetimes, most local BHs must have gained their mass in no more than a couple of bright episodes, in agreement with merger-driven fueling models.
21 pages, 13 figures, accepted to ApJ (revised to match accepted version; modeling and tests of redshift evolution added)
References in corpus (44)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- The Host Galaxies and Classification of Active Galactic Nuclei
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- 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 unified model for AGN feedback in cosmological simulations of structure formation
- Direct cosmological simulations of the growth of black holes and galaxies
- The Stellar, Gas and Dynamical Masses of Star-Forming Galaxies at z~2
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: II. Formation of Red Ellipticals
- Clustering of High Redshift () Quasars from the Sloan Digital Sky Survey
- Absorption Properties and Evolution of Active Galactic Nuclei
- A synthesis model for AGN evolution: supermassive black holes growth and feedback modes
- The Luminosity Function of X-ray Selected Active Galactic Nuclei: Evolution of Supermassive Black Holes at High Redshift
- Fueling Low-Level AGN Activity Through the Stochastic Accretion of Cold Gas
- HeII Reionization and its Effect on the IGM
- Dissipation and Extra Light in Galactic Nuclei: II. 'Cusp' Ellipticals
- Equal- and unequal-mass mergers of disk and elliptical galaxies with black holes
- Evolution of the Intergalactic Opacity: Implications for the Ionizing Background, Cosmic Star Formation, and Quasar Activity
- The 2dF-SDSS LRG and QSO Survey: QSO clustering and the L-z degeneracy
- Measuring the kinetic power of AGN in the radio mode
- An Observed Fundamental Plane Relation for Supermassive Black Holes
- Clustering Analyses of 300,000 Photometrically Classified Quasars--I. Luminosity and Redshift Evolution in Quasar Bias
- The Evolution of AGN Host Galaxies: From Blue to Red and the Influence of Large-Scale Structures
- A Theoretical Interpretation of the Black Hole Fundamental Plane
- Dissipation and Extra Light in Galactic Nuclei: I. Gas-Rich Merger Remnants
- Dissipation and Extra Light in Galactic Nuclei: III. 'Core' Ellipticals and 'Missing' Light
- Type II Quasars from the Sloan Digital Sky Survey: V. Imaging host galaxies with the Hubble Space Telescope
- A large population of mid-infrared selected, obscured active galaxies in the Bootes field
- AEGIS: New Evidence Linking Active Galactic Nuclei to the Quenching of Star Formation
- Luminosity and redshift dependent quasar clustering
- Host Galaxy Bulge Predictors of Supermassive Black Hole Mass
- Quasar Proximity Zones and Patchy Reionization
- The Co-Formation of Spheroids and Quasars Traced in their Clustering
- Dissipation and the Fundamental Plane: Observational Tests
- The Luminosity Function of high-redshift QSOs - A combined analysis of GOODS and SDSS
- The Self-Regulated Growth of Supermassive Black Holes
- A Flat Photoionization Rate at 2<z<4.2: Evidence for a Stellar-Dominated UV Background and Against a Decline of Cosmic Star Formation Beyond z~3
- The Origin of Line Emission in Massive z~2.3 Galaxies: Evidence for Cosmic Downsizing of AGN Host Galaxies
- High-Redshift QSOs in the SWIRE Survey and the z~3 QSO Luminosity Function
- Detection of the Transverse Proximity Effect: Radiative Feedback from Bright QSOs
- The Lifetime of FRIIs in Groups and Clusters: Implications for Radio-Mode Feedback
- The Line-of-Sight Proximity Effect and the Mass of Quasar Host Halos
- The evolution of host mass and black hole mass in QSOs from the 2dF QSO Redshift Survey
- Eight powers of ten: similarities in black hole accretion on all mass scales
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- Cosmic Evolution of Black Holes and Spheroids. V. The Relation Between Black Hole Mass and Host Galaxy Luminosity for a Sample of 79 Active Galaxies
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- AGN and their host galaxies in the local Universe: two mass independent Eddington ratio distribution functions characterize black hole growth
- AGN Feedback models: Correlations with star formation and observational implications of time evolution
- Active Galactic Nucleus Environments and Feedback to Neighboring Galaxies at Probed by Lyman-Alpha Emitters
- Modeling the effects of dust evolution on the SEDs of galaxies of different morphological type
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- Driving the Growth of the Earliest Supermassive Black Holes with Major Mergers of Host Galaxies
- The Assembly of Black Hole Mass and Luminosity Functions of High-redshift Quasars via Multiple Accretion Episodes
- Comparing Simple Quasar Demographics Models
- The co-evolution of black hole growth and star formation from a cross-correlation analysis between quasars and the cosmic infrared background
- The "Green Bean" Galaxy SDSS J224024.1--092748: Unravelling the emission signature of a quasar ionization echo
- SAGAN -- III: New insights into giant radio quasars
- Unveiling the hosts of parsec-scale massive black hole binaries: morphology and electromagnetic signatures
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- A unifying evolutionary framework for infrared-selected obscured and unobscured quasar host haloes
- Synchronizing the EMRIs and IMRIs in AGN accretion disks
- Episodic activities of supermassive black holes at redshift : driven by mergers?
- Probing compact dark matter objects with microlensing in gravitationally lensed quasars
- On the Evolution of High-Redshift Active Galactic Nuclei
- AGN lifetimes in UV-selected galaxies: a clue to supermassive black hole-host galaxy coevolution
- Accretion mediated spin-eccentricity correlations in LISA massive black hole binaries
- Identifying massive black hole binaries via light curve variability in optical time-domain surveys
- Signatures of AGN induced metal loss in the stellar population
- Cosmic quenching and scaling laws for the evolution of supermassive black holes and host galaxies
- Overmassive and Undermassive Massive Black Holes: The Role of Environment and Gravitational-Wave Recoils
- Variability Selected Active Galactic Nuclei from ASAS-SN Survey: Constraining the Low Luminosity AGN Population
- Off-center black hole seed formation? Implications for high and low redshift massive black holes
- Detecting dark matter substructure with lensed quasars in optical bands
- Entropy plateaus can emerge from gas replacement at a characteristic halo mass in simulated groups and clusters of galaxies