The mass function of black holes at 1<z<4.5: comparison of models with observations
arXiv:1107.4916 · doi:10.1111/j.1365-2966.2012.20708.x
Abstract
In this paper, we compare the observationally derived black hole mass function (BHMF) of luminous broad-line quasars (BLQSOs) at 1<z<4.5 drawn from the Sloan Digital Sky Survey (SDSS) presented in Kelly et al. (2010), with models of merger driven BH growth in the context of standard hierarchical structure formation models. In the models, we explore two distinct black hole seeding prescriptions at the highest redshifts: "light seeds" - remnants of Population III stars and "massive seeds" that form from the direct collapse of pre-galactic disks. The subsequent merger triggered mass build-up of the black hole population is tracked over cosmic time under the assumption of a fixed accretion rate as well as rates drawn from the distribution derived by Merloni & Heinz. Our model snapshots are compared to the SDSS derived BHMFs of BLQSOs. Our key findings are that the duty cycle of SMBHs powering BLQSOs increases with increasing redshift for all models and models with Pop III remnants as black hole seeds are unable to fit the observationally derived BHMFs for BLQSOs, lending strong support for the massive seeding model (abridged).
7 pages, 4 figures, final & accepted version, to appear in MNRAS
References in corpus (15)
- A luminous quasar at a redshift of z = 7.085
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Supermassive black hole formation during the assembly of pre-galactic discs
- The Formation of Population III Binaries from Cosmological Initial Conditions
- The evolution of massive black hole seeds
- A synthesis model for AGN evolution: supermassive black holes growth and feedback modes
- Supermassive black hole binaries in gaseous and stellar circumnuclear discs: orbital dynamics and gas accretion
- Quasars at z=6: the survival of the fittest
- Faint high-redshift AGN in the Chandra Deep Field South: the evolution of the AGN luminosity function and black hole demography
- The Delay of Population III Star Formation by Supersonic Streaming Velocities
- The mass function of high redshift seed black holes
- Is there an upper limit to black hole masses?
- Black hole growth in the early Universe is self-regulated and largely hidden from view
- No evidence of obscured, accreting black holes in most z=6 star-forming galaxies
- Angular momentum and clustering properties of early dark matter halos
Cited by in corpus (21)
- Titans of the Early Universe: The Prato Statement on the Origin of the First Supermassive Black Holes
- The Demographics of Broad Line Quasars in the Mass-Luminosity Plane II. Black Hole Mass and Eddington Ratio Functions
- The evolution of active galactic nuclei and their spins
- X-ray constraints on the local supermassive black hole occupation fraction
- Unveiling the first black holes with JWST: multi-wavelength spectral predictions
- The (black hole)-bulge mass scaling relation at low masses
- Black Hole Mass Scaling Relations for Early-Type Galaxies: - and -
- Supermassive Seeds for Supermassive Black Holes
- Observational Signatures of High-Redshift Quasars and Local Relics of Black Hole Seeds
- Exploring SMBH Assembly with Semi-analytic Modelling
- Limits on the high redshift growth of massive black holes
- The Biggest Explosions in the Universe
- Glimmering in the dark: modeling the low-mass end of the relation and of the quasar luminosity function
- The impact of reionization on the formation of supermassive black hole seeds
- Massive black holes in central cluster galaxies
- Cosmological simulations of massive black hole seeds: predictions for next generation electromagnetic and gravitational wave observations
- Impact of gas spin and Lyman-Werner flux on black hole seed formation in cosmological simulations: implications for direct collapse
- The Assembly of Black Hole Mass and Luminosity Functions of High-redshift Quasars via Multiple Accretion Episodes
- How Black Holes Stop Their Host Galaxy from Growing Without AGN Feedback
- Massive black holes and their galaxies
- The black hole occupation fraction as a fossil record of seeding, dynamics, and galaxy assembly