Mass accretion toward black holes in the final phase of galaxy mergers
arXiv:1912.10621 · doi:10.3847/1538-4357/ab655a
Abstract
We studied the final phases of galactic mergers, focusing on interactions between supermassive black holes (SMBHs) and the interstellar medium in a central sub-kpc region, using an N-body/hydrodynamics code. This numerical experiment aims to understand the fate of the gas supplied by mergers of two or more galaxies with SMBHs, whose masses are . We observed that the mass accretion rate to one SMBH exceeds the Eddington accretion rate when the distance between two black holes (BHs) rapidly decreases. However, this rapid accretion phase does not last for more than yrs, and it drops to 10% of the Eddington rate in the quasi-steady accretion phase. The rapid accretion is caused by the angular momentum transfer from the gas to the stellar component, and the moderate accretion in the quasi-steady phase is caused {by turbulent viscosity and gravitational torque in the disk. The second merger event enhances the mass accretion to the BHs; however, this phase takes place on a similar timescale to the first merger event. We also found that the AGN feedback and the mass accretion to BHs can coexist in the central region of merged galaxies, if the amount of feedback energy is given as , where is the accretion rate to pc. The accretion rate is suppressed by 1/50 in the quasi-steady accretion phase for . The fraction of the gas that finally falls to each BH is approximately 5-7% of the supplied total gas mass (), and 15-20% of the gas forms a circumnuclear gas inside 100 pc. This remnant gas heavily obscures the luminous phase of the active galactic nuclei (AGN) during merger events, and the moderate AGN feedback does not alter this property.
22 pages, 16 figures, accepted by ApJ
References in corpus (20)
- The bulk of the black hole growth since z~1 occurs in a secular universe: No major merger-AGN connection
- Rapid Formation of Supermassive Black Hole Binaries in Galaxy Mergers with Gas
- Obscuration-dependent evolution of Active Galactic Nuclei
- A Significant Population of Very Luminous Dust-Obscured Galaxies at Redshift z ~ 2
- Supermassive black hole binaries in gaseous and stellar circumnuclear discs: orbital dynamics and gas accretion
- Black Holes on FIRE: Stellar Feedback Limits Early Feeding of Galactic Nuclei
- Unveiling obscured accretion in the Chandra Deep Field South
- Growing supermassive black holes in the late stages of galaxy mergers are heavily obscured
- Galaxy Interactions Trigger Rapid Black Hole Growth: an unprecedented view from the Hyper Suprime-Cam Survey
- Vibrationally Excited HCN in the Luminous Infrared Galaxy NGC 4418
- ALMA Imaging of HCN, CS and dust in Arp 220 and NGC 6240
- Incidence of WISE-Selected Obscured AGNs in Major Mergers and Interactions from the SDSS
- The impact of radio feedback from active galactic nuclei in cosmological simulations: Formation of disk galaxies
- Black hole feeding and feedback: the physics inside the "subgrid"
- The Pairing of Accreting Massive Black Holes in Multiphase Circumnuclear Disks: the Interplay between Radiative Cooling, Star Formation, and Feedback Processes
- Black hole obscuration and duty cycles mediated by AGN feedback in high redshift galaxies
- How AGN and SNe feedback affect mass transport and black hole growth in high redshift galaxies
- Clustering of infrared-bright dust-obscured galaxies revealed by the Hyper Suprime-Cam and WISE
- Binary-disk interaction: Gap-Opening criteria
- The composite nature of Dust-Obscured Galaxies (DOGs) at z~2-3 in the COSMOS field: II. The AGN fraction
Cited by in corpus (5)
- A hard X-ray view of Luminous and Ultra-luminous Infrared Galaxies in GOALS: I - AGN obscuration along the merger sequence
- BASS XXXVII: The role of radiative feedback in the growth and obscuration properties of nearby supermassive black holes
- Hard X-Ray to Radio Multiwavelength SED Analysis of Local U/LIRGs in GOALS Sample with Self-consistent AGN Model Including Polar-dust Component
- Broadband X-ray Spectral Analysis of the Dual AGN System Mrk 739
- The Nature of LoBAL QSOs: II. HST/WFC3 Observations Reveal Host Galaxies Dominated by Mergers