Linking black-hole growth with host galaxies: The accretion-stellar mass relation and its cosmic evolution
Abstract
Previous studies suggest that the growth of supermassive black holes (SMBHs) may be fundamentally related to host-galaxy stellar mass (). To investigate this SMBH growth- relation in detail, we calculate long-term SMBH accretion rate as a function of and redshift [] over ranges of and . Our is constrained by high-quality survey data (GOODS-South, GOODS-North, and COSMOS), and by the stellar mass function and the X-ray luminosity function. At a given , is higher at high redshift. This redshift dependence is stronger in more massive systems (for , is three decades higher at than at ), possibly due to AGN feedback. Our results indicate that the ratio between and average star formation rate () rises toward high at a given redshift. This dependence on does not support the scenario that SMBH and galaxy growth are in lockstep. We calculate SMBH mass history [] based on our and the from the literature, and find that the - relation has weak redshift evolution since . The ratio is higher toward massive galaxies: it rises from at to at . Our predicted ratio at high is similar to that observed in local giant ellipticals, suggesting that SMBH growth from mergers is unlikely to dominate over growth from accretion.
Keywords
Cite
@article{arxiv.1710.09399,
title = {Linking black-hole growth with host galaxies: The accretion-stellar mass relation and its cosmic evolution},
author = {G. Yang and W. N. Brandt and F. Vito and C. -T. J. Chen and J. R. Trump and B. Luo and M. Y. Sun and Y. Q. Xue and A. M. Koekemoer and D. P. Schneider and C. Vignali and J. -X. Wang},
journal= {arXiv preprint arXiv:1710.09399},
year = {2018}
}
Comments
27 pages, 21 figures, 2 tables; MNRAS accepted