Mass-dependent evolution of the relation between supermassive black hole mass and host spheroid mass since z ~ 1
arXiv:1002.3231 · doi:10.1111/j.1365-2966.2010.16530.x
Abstract
We investigate the evolution of supermassive black hole mass (M_BH) and the host spheroid mass (M_sph) in order to track the history of the M_BH-M_sph relationship. The typical mass increase of M_BH is calculated by a continuity equation and accretion history, which is estimated from the active galactic nucleus (AGN) luminosity function. The increase in M_sph is also calculated by using a continuity equation and a star formation model, which uses observational data for the formation rate and stellar mass function. We find that the black hole to spheroid mass ratio is expected to be substantially unchanged since z~1.2 for high mass objects (M_BH>10^8.5M_SUN and M_sph>10^11.3M_SUN). In the same redshift range, the spheroid mass is found to increase more rapidly than the black hole mass if M_sph>10^11M_SUN. The proposed mass-dependent model is consistent with the current available observational data in the M_BH-M_sph diagram.
15 pages, 8 figures, accepted to MNRAS
References in corpus (16)
- The stellar mass assembly of galaxies from z=0 to z=4. Analysis of a sample selected in the rest-frame near-infrared with Spitzer
- Star formation in AEGIS field galaxies since z=1.1 . Staged galaxy formation, and a model of mass-dependent gas exhaustion
- The role of black holes in galaxy formation and evolution
- The stellar masses of 25000 galaxies at 0.2<z<1.0 estimated by the COMBO-17 survey
- Star Formation and the Growth of Stellar Mass
- The quasar M_bh - M_host relation through Cosmic Time II - Evidence for evolution from z=3 to the present age
- The dependence of Star Formation on Galaxy Stellar Mass
- Cosmic Evolution of Black Holes and Spheroids. II: Scaling Relations at z=0.36
- The evolution of the specific star formation rate of massive galaxies to z ~ 1.8 in the E-CDFS
- Cosmic Evolution of Black Holes and Spheroids. IV. The BH Mass - Spheroid Luminosity Relation
- Host Galaxy Bulge Predictors of Supermassive Black Hole Mass
- UV to IR SEDs of UV selected galaxies in the ELAIS fields: evolution of dust attenuation and star formation activity from z=0.7 to z=0.2
- The Star Formation and Extinction Co-Evolution of UV-Selected Galaxies over 0.05<z<1.2
- Star formation history of galaxies from z=0 to z=0.7 A backward approach to the evolution of star-forming galaxies
- Constraints on the star formation histories of galaxies from z~1 to z~0
- The correlation of black hole mass with metallicity index of host spheroid
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