English

Early Growth of Massive Black Holes in Quasars

Astrophysics 2009-11-13 v1

Abstract

Episodic activity of quasars is driving growth of supermassive black holes (SMBHs) via accretion of baryon gas. In this Letter, we develop a simple method to analyse the duty cycle of quasars up to redshift z6z\sim 6 universe from luminosity functions (LFs). We find that the duty cycle below redshift z2z\sim 2 follows the cosmic history of star formation rate (SFR) density. Beyond z2z\sim 2, the evolutionary trends of the duty cycle are just opposite to that of the cosmic SFR density history, implying the role of feedback from black hole activity. With the duty cycle, we get the net lifetime of quasars (z5z\le 5) about 109\sim 10^9yrs. Based on the local SMBHs, the mean mass of SMBHs is obtained at any redshifts and their seeds are of 105\sunm10^5\sunm at the reionization epoch (zrez_{\rm re}) of the universe through the conservation of the black hole number density in comoving frame. We find that primordial black holes (103\sunm\sim 10^3\sunm) are able to grow up to the seeds via a moderate super-Eddington accretion of 30\sim 30 times of the critical rate from z=24z=24 to zrez_{\rm re}. Highly super-Eddington accretion onto the primordials is not necessary.

Keywords

Cite

@article{arxiv.0712.0523,
  title  = {Early Growth of Massive Black Holes in Quasars},
  author = {J. M. Wang and Y. -M. Chen and C. -S. Yan and C. Hu},
  journal= {arXiv preprint arXiv:0712.0523},
  year   = {2009}
}

Comments

4 pages, 2 figures in emulateapj5.sty