Cosmological evolution of massive black holes: effects of Eddington ratio distribution and quasar lifetime
arXiv:1010.0046 · doi:10.1088/0004-637X/725/1/388
Abstract
A power-law time-dependent lightcurve for active galactic nuclei (AGNs) is expected by the self-regulated black hole growth scenario, in which the feedback of AGNs expels gas and shut down accretion. This is also supported by the observed power-law Eddington ratio distribution of AGNs. At high redshifts, the AGN life timescale is comparable with (or even shorter than) the age of the universe, which set a constraint on the minimal Eddington ratio for AGNs on the assumption of a power-law AGN lightcurve. The black hole mass function (BHMF) of AGN relics is calculated by integrating the continuity equation of massive black hole number density on the assumption of the growth of massive black holes being dominated by mass accretion with a power-law Eddington ratio distribution for AGNs. The derived BHMF of AGN relics at z=0 can fit the measured local mass function of the massive black holes in galaxies quite well, provided the radiative efficiency ~0.1 and a suitable power-law index for the Eddington ratio distribution are adopted. In our calculations of the black hole evolution, the duty cycle of AGN should be less than unity, which requires the quasar life timescale >0.5 giga-years.
7 pages, accepted by ApJ
References in corpus (11)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- Biases in Virial Black Hole Masses: An SDSS Perspective
- Eddington-limited accretion and the black hole mass function at redshift 6
- A synthesis model for AGN evolution: supermassive black holes growth and feedback modes
- Constraints on Black Hole Growth, Quasar Lifetimes, and Eddington Ratio Distributions from the SDSS Broad Line Quasar Black Hole Mass Function
- A Theoretical Interpretation of the Black Hole Fundamental Plane
- Quasars Are Not Light-Bulbs: Testing Models of Quasar Lifetimes with the Observed Eddington Ratio Distribution
- Supermassive Black Holes in the Hierarchical Universe: A General Framework and Observational Tests
- On the inconsistency between the black hole mass function inferred from M_bh-sigma and M_bh-L correlation
- Cosmological Evolution of the Duty Cycle of Quasars
- Mid-Infrared Spectroscopic Properties of Ultra-Luminous Infrared Quasars
Cited by in corpus (31)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- The clustering of intermediate redshift quasars as measured by the Baryon Oscillation Spectroscopic Survey
- Accretion-Driven Evolution of Black Holes: Eddington Ratios, Duty Cycles, and Active Galaxy Fractions
- The Demographics of Broad Line Quasars in the Mass-Luminosity Plane II. Black Hole Mass and Eddington Ratio Functions
- Supermassive black holes in cosmological simulations I: M_BH-M_star relation and black hole mass function
- No clear submillimetre signature of suppressed star formation amongst X-ray luminous AGNs
- Cross-Correlation of SDSS DR7 Quasars and DR10 BOSS Galaxies: The Weak Luminosity Dependence of Quasar Clustering at z~0.5
- Black Hole and Galaxy Coevolution from Continuity Equation and Abundance Matching
- Black Hole -- Galaxy Correlations in Simba
- Toward determining the number of observable supermassive black hole shadows
- Mass Functions of Supermassive Black Holes Across Cosmic Time
- A Tale of Two Populations: The Contribution of Merger and Secular Processes to the Evolution of Active Galactic Nuclei
- 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
- AGN evolution from a galaxy evolution viewpoint
- The Main Sequences of Starforming Galaxies and Active Galactic Nuclei at High Redshift
- Cosmological Evolution of Supermassive Black Holes. II. Evidence for Downsizing of Spin Evolution
- Constraining the supermassive black holes evolution through the continuity equation
- Cosmological evolution of supermassive black holes. I. mass function at 0<z<2
- AGN and their host galaxies in the local Universe: two mass independent Eddington ratio distribution functions characterize black hole growth
- Accretion Rates of Red Quasars from the Hydrogen P line
- Testing wind as an explanation for the spin problem in the continuum-fitting method
- The Assembly of Black Hole Mass and Luminosity Functions of High-redshift Quasars via Multiple Accretion Episodes
- Accretion History of AGN III: Radiative Efficiency and AGN Contribution to Reionization
- The Black Hole Mass Function Across Cosmic Times II. Heavy Seeds and (Super)Massive Black Holes
- Cosmological growth and feedback from supermassive black holes
- Demographics of Tidal Disruption Events with L-Galaxies: I. Volumetric TDE rates and the abundance of Nuclear Star Clusters
- Predictions for LISA and PTA based on SHARK galaxy simulations
- Growth of massive black holes at high-z via accretion predominantly driven by magnetic outflows
- Probing the rest-frame wavelength dependence of quasar variability : Insights from the Zwicky Transient Facility Survey
- Constraining black hole-galaxy scaling relations from the large-scale clustering of Active Galactic Nuclei and implied mean radiative efficiency
- Cosmic quenching and scaling laws for the evolution of supermassive black holes and host galaxies