English

Black-Hole Growth is Mainly Linked to Host-Galaxy Stellar Mass rather than Star Formation Rate

High Energy Astrophysical Phenomena 2017-06-28 v2 Astrophysics of Galaxies

Abstract

We investigate the dependence of black-hole accretion rate (BHAR) on host-galaxy star formation rate (SFR) and stellar mass (MM_*) in the CANDELS/GOODS-South field in the redshift range of 0.5z<2.00.5\leq z < 2.0. Our sample consists of 18000\approx 18000 galaxies, allowing us to probe galaxies with 0.1SFR100 M yr10.1 \lesssim \mathrm{SFR} \lesssim 100\ M_\odot\ \mathrm{yr}^{-1} and/or 108M1011 M10^8 \lesssim M_* \lesssim 10^{11}\ M_{\odot}. We use sample-mean BHAR to approximate long-term average BHAR. Our sample-mean BHARs are derived from the ChandraChandra Deep Field-South 7 Ms observations, while the SFRs and MM_* have been estimated by the CANDELS team through SED fitting. The average BHAR is correlated positively with both SFR and MM_*, and the BHAR-SFR and BHAR-MM_* relations can both be described acceptably by linear models with a slope of unity. However, BHAR appears to be correlated more strongly with MM_* than SFR. This result indicates that MM_* is the primary host-galaxy property related to black-hole growth, and the apparent BHAR-SFR relation is largely a secondary effect due to the star-forming main sequence. Among our sources, massive galaxies (M1010MM_* \gtrsim 10^{10} M_{\odot}) have significantly higher BHAR/SFR ratios than less-massive galaxies, indicating the former have higher black-hole fueling efficiency and/or higher SMBH occupation fraction than the latter. Our results can naturally explain the observed proportionality between MBHM_{\rm BH} and MM_* for local giant ellipticals, and suggest their MBH/MM_{\rm BH}/M_* is higher than that of local star-forming galaxies. Among local star-forming galaxies, massive systems might have higher MBH/MM_{\rm BH}/M_* compared to dwarfs.

Keywords

Cite

@article{arxiv.1704.06658,
  title  = {Black-Hole Growth is Mainly Linked to Host-Galaxy Stellar Mass rather than Star Formation Rate},
  author = {G. Yang and C. -T. J. Chen and F. Vito and W. N. Brandt and D. M. Alexander and B. Luo and M. Y. Sun and Y. Q. Xue and F. E. Bauer and A. M. Koekemoer and B. D. Lehmer and T. Liu and D. P. Schneider and O. Shemmer and J. R. Trump and C. Vignali and J. -X. Wang},
  journal= {arXiv preprint arXiv:1704.06658},
  year   = {2017}
}

Comments

18 pages, 11 figures, 3 tables; accepted for publication in ApJ