Evidence for cosmic evolution in the spin of the most massive black holes
arXiv:1109.0997 · doi:10.1111/j.1745-3933.2011.01148.x
Abstract
We use results from simulations of the production of magnetohydrodynamic jets around black holes to derive the cosmic spin history of the most massive black holes. We assume that the efficiency of jet production is a monotonic function of spin a, as given by the simulations, and that the accretion flow geometry is similarly thick for quasars accreting close to the Eddington ratio and for low-excitation radio galaxies accreting at very small Eddington rates. We use the ratio of the comoving densities of the jet power and the radiated accretion power associated with supermassive black holes with Mbh>~10^8 Msol to estimate the cosmic history of the characteristic spin a. The evolution of this ratio, which increases with decreasing z, is consistent with a picture where the z~0 active galactic nuclei have typically higher spins than those at z~2 (with typical values a~0.35-0.95 and a~0.0-0.25 respectively). We discuss the implications in terms of the relative importance of accretion and mergers in the growth of supermassive black holes with Mbh>~10^8 Msol.
Accepted by MNRAS. 6 pages, 3 colour figures. Supplementary material can be found at: http://research.icg.port.ac.uk/~martinea/spin_suppl_fig.pdf
References in corpus (8)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- The synthesis of the cosmic X-ray background in the Chandra and XMM-Newton era
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- 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
- On the final spin from the coalescence of two black holes
- The Cosmic Decline in the H2/HI-Ratio in Galaxies
- Evidence for a large fraction of Compton-thick quasars at high redshift
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- Cosmological Evolution of Supermassive Black Holes. II. Evidence for Downsizing of Spin Evolution
- A novel Bayesian approach for decomposing the radio emission of quasars: II. Link between quasar radio emission and black hole mass
- The Powerful Jet and Gamma-Ray Flare of the Quasar PKS 0438436
- Is radio jet power linearly proportional to the product of central black hole mass and Eddington ratio in AGN?