English

Low-luminosity AGN and X-ray binary populations in COSMOS star-forming galaxies

High Energy Astrophysical Phenomena 2018-09-26 v1

Abstract

We present an X-ray stacking analysis of \sim75,000 star-forming galaxies between 0.1<z<5.00.1<z<5.0 using the Chandra COSMOS Legacy survey to study the X-ray emission of low-luminosity active galactic nuclei (AGN) and its connection to host galaxy properties. The stacks at z<0.9z<0.9 have luminosity limits as low as 1040104110^{40}-10^{41} erg s1^{-1}, a regime in which X-ray binaries (XRBs) can dominate the X-ray emission. Comparing the measured luminosities to established XRB scaling relations, we find that the redshift evolution of the luminosity per star formation rate (SFR) of XRBs depends sensitively on the assumed obscuration and may be weaker than previously found. The XRB scaling relation based on stacks from the Chandra Deep Field South overestimates the XRB contribution to the COSMOS high specific SFR (sSFR) stacks, possibly due to a bias affecting the CDF-S stacks because of their small galaxy samples. After subtracting the estimated XRB contribution from the stacks, we find that most stacks at z>1.3z>1.3 exhibit a significant X-ray excess indicating nuclear emission. The AGN emission is strongly correlated with stellar mass but does not exhibit an additional correlation with SFR. The hardness ratios of the high-redshift stacks indicate that the AGN are substantially obscured (NH1023N_{\mathrm{H}}\sim10^{23} cm2^{-2}). These obscured AGN are not identified by IRAC color selection and have LX10411043L_X\sim10^{41}-10^{43} erg s1^{-1}, consistent with accretion at an Eddington rate of 103\sim10^{-3} onto 107108M10^7-10^8 M_{\odot} black holes. Combining our results with other X-ray studies suggests that AGN obscuration depends on stellar mass and an additional variable, possibly the Eddington rate.

Keywords

Cite

@article{arxiv.1808.00970,
  title  = {Low-luminosity AGN and X-ray binary populations in COSMOS star-forming galaxies},
  author = {Francesca M. Fornasini and Francesca Civano and Giuseppina Fabbiano and Martin Elvis and Stefano Marchesi and Takamitsu Miyaji and Andreas Zezas},
  journal= {arXiv preprint arXiv:1808.00970},
  year   = {2018}
}

Comments

24 pages, 12 figures, 3 tables (2 tables available in full online or by request)