English

Properties and Evolution of Dual and Offset AGN in the ASTRID Simulation at $z \sim 2$

Astrophysics of Galaxies 2023-03-29 v1

Abstract

We examine the dual (both BHs active) and offset (one BH active) AGN population (comprising \sim 2000 pairs at 0.5kpcΔr<30kpc0.5\,\text{kpc}\lesssim\Delta r<30\,\text{kpc}) at z=23z=2\sim3 in the ASTRID simulation covering (360 cMpc)3{^3}. The dual (offset) AGN make up 3.0(2.2)%3.0(2.2)\% of all AGN at z=2z=2. The dual fraction is roughly constant while the offset fraction increases by a factor of ten from z=42z=4\sim2. Compared with the full AGN population, duals are characterized by a low MBH/MM_\text{BH}/M_* ratio, a high specific star-formation rate (sSFR) of 1Gyr1\sim 1\,\text{Gyr}^{-1}, and a high Eddington ratio (0.05\sim 0.05, double that of single AGN). The dual AGN are formed in major galaxy mergers (typically involving Mhalo<1013MM_\text{halo}<10^{13}\,M_\odot), with BHs that have similar masses. At small separations (when their host galaxies are in the late phase of the merger) duals become 282\sim8 times brighter (albeit more obscured) than at larger separations. 80%80\% of these bright, close duals merge in the simulation within 500Myrs\sim500\,\text{Myrs}. Notably, the initially less-massive BH in duals frequently becomes the brighter AGN during the galaxy merger. In offset AGN, the active BH is typically 10\gtrsim 10 times more massive than its non-active counterpart and than most BHs in duals. Offsets are predominantly formed in minor galaxy mergers with the active BH residing in the center of massive halos (M halo101314M M_\text{ halo}\sim 10^{13-14}\,M_\odot). In these deep potentials, gas stripping is common and the secondary quickly deactivates. The stripping also leads to inefficient orbital decay amongst offsets, which stall at Δr5kpc\Delta r\sim5\,\text{kpc} for a few hundred Myrs.

Keywords

Cite

@article{arxiv.2208.04970,
  title  = {Properties and Evolution of Dual and Offset AGN in the ASTRID Simulation at $z \sim 2$},
  author = {Nianyi Chen and Tiziana Di Matteo and Yueying Ni and Michael Tremmel and Colin DeGraf and Yue Shen and A. Miguel Holgado and Simeon Bird and Rupert Croft and Yu Feng},
  journal= {arXiv preprint arXiv:2208.04970},
  year   = {2023}
}

Comments

17 Pages, 18 Figures; comments welcome!