The hydrodynamic evolution of binary black holes embedded within the vertically stratified disks of active galactic nuclei
arXiv:2103.12088 · doi:10.3847/1538-4357/aca967
Abstract
Stellar-mass black holes can become embedded within the gaseous disks of active galactic nuclei (AGNs). Afterwards, their interactions are mediated by their gaseous surroundings. In this work, we study the evolution of stellar-mass binary black holes (BBHs) embedded within AGN disks using a combination of three-dimensional hydrodynamic simulations and analytic methods, focusing on environments in which the AGN disk scale height is the BBH sphere of influence. We model the local surroundings of the embedded BBHs using a wind tunnel formalism and characterize different accretion regimes based on the local properties of the disk, which range from wind-dominated to quasi-spherical. We use our simulations to develop prescriptions for mass accretion and drag for embedded BBHs. We use these prescriptions, along with AGN disk models that can represent the Toomre-unstable outer regions of AGN disks, to study the long-term evolution of the BBHs as they migrate through the disk. We find that BBHs typically merge within , increasing their mass significantly in the process, allowing BBHs to enter (or cross) the pair-instability supernova mass gap. The rate at which gas is supplied to these BBHs often exceeds the Eddington limit, sometimes by several orders of magnitude. We conclude that most embedded BBHs will merge before migrating significantly in the disk. Depending on the conditions of the ambient gas and the distance to the system, LISA can detect the transition between the gas-dominated and gravitational wave dominated regime for inspiraling BBHs that are formed sufficiently close to the AGN ( 0.1 pc). We also discuss possible electromagnetic signatures during and following the inspiral, finding that it is generally unlikely but not inconceivable for the bolometric luminosity of the BBH to exceed that of the host AGN.
19 pages, 8 figures, accepted to ApJ
References in corpus (31)
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- GW190521: A Binary Black Hole Merger with a Total Mass of
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- Accretion disc viscosity: how big is alpha?
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- Candidate Electromagnetic Counterpart to the Binary Black Hole Merger Gravitational Wave Event S190521g
- MOCCA-SURVEY Database I: Coalescing Binary Black Holes Originating From Globular Clusters
- Merging black holes in young star clusters
- Intermediate mass black holes in AGN disks II. Model predictions & observational constraints
- On the rate of black hole binary mergers in galactic nuclei due to dynamical hardening
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation II
- Circumbinary Accretion from Finite and Infinite Disks
- Dynamical corotation torques on low-mass planets
- Asymmetric Accretion Flows within a Common Envelope
- Tidal Disruption Event Host Galaxies in the Context of the Local Galaxy Population
- Prompt Shocks in the Gas Disk Around a Recoiling Supermassive Black Hole Binary
- Illuminating Massive Black Holes With White Dwarfs: Orbital Dynamics and High Energy Transients from Tidal Interactions
- On the Accretion-Fed Growth of Neutron Stars During Common Envelope
- Hydrodynamical Evolution of Black-Hole Binaries Embedded in AGN Discs
- Electromagnetic Signatures of Relativistic Explosions in AGN Disks
- Neutron Star Mergers in AGN Accretion Disks: Cocoon and Ejecta Shock Breakouts
- Accretion Disk Assembly During Common Envelope Evolution: Implications for Feedback and LIGO Binary Black Hole Formation
- Hot Circumsingle Disks Drive Binary Black Hole Mergers in Active Galactic Nucleus Disks
- Contracting and Expanding Binary Black Holes in 3D Low-Mass AGN Disks: The Importance of Separation
- On the stability and collisions in triple stellar systems
- Bondi-Hoyle-Lyttleton Accretion onto Star Clusters
- Common Envelope Wind Tunnel: Range of Applicability and Self-Similarity in Realistic Stellar Envelopes
- Formation of Massive Black Holes in Dense Star Clusters
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- High-energy Neutrino Productions from AGN Disk Transients Impacted by Circum-disk Medium
- Electromagnetic signatures of white dwarf collisions in AGN discs
- Binary black holes in magnetized AGN disks
- High-energy Neutrinos from Stellar Explosions in Active Galactic Nuclei Accretion Disks