Radiation pressure role in accreting massive black hole binaries
arXiv:2508.18349 · doi:10.1051/0004-6361/202556970
Abstract
We investigate the impact of radiation pressure on the circumbinary discs surrounding accreting massive black hole binaries (MBHBs) at milli-parsec separations, using 3D hyper-Lagrangian resolution hydrodynamic simulations. The circumbinary discs in our simulations evolve under an adiabatic equation of state. The gas temperature is therefore allowed to change through viscous heating, black-body cooling and self-gravity. We take a significant step further by including the contribution of radiation pressure in the simulations. We model binaries with a total mass of , eccentricities and mass ratios . We find that the radiation pressure significantly alters the vertical and thermal structure of the disc, resulting in a geometrically thinner, therefore colder configuration. This leads to a reduced accretion rate onto the binary and suppresses cavity eccentricity growth and precession in circular equal mass binaries. The binary eccentricity remains approximately constant, while the semi-major axis decreases over time due to net negative torque, regardless of the initial binary orbital parameters.
11 pages, 7 figures, A&A submitted
References in corpus (19)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Massive black hole binary mergers within sub-pc scale gas discs
- General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
- Hydrodynamic Torques in Circumbinary Accretion Disks
- Circumbinary Accretion from Finite and Infinite Disks
- Orbital Evolution of Equal-mass Eccentric Binaries due to a Gas Disk: Eccentric Inspirals and Circular Outspirals
- Orbital Evolution of Binaries in Circumbinary Disks
- Precession and accretion in circumbinary discs: The case of HD 104237
- Preferential Accretion and Circumbinary Disk Precession in Eccentric Binary Systems
- Resolving massive black hole binaries evolution via adaptive particle-splitting
- The importance of live binary evolution in numerical simulations of binaries embedded in circumbinary discs
- Electromagnetic signatures from accreting massive black hole binaries in time domain photometric surveys
- Global Three-Dimensional Radiation Magnetohydrodynamic Simulations of Accretion onto a Stellar Mass Black Hole at Sub- and Near-critical Accretion Rates
- Emission signatures from sub-pc Post-Newtonian binaries embedded in circumbinary discs
- Extremely Relativistic Tidal Disruption Events
- Suppressed accretion onto massive black hole binaries surrounded by thin disks
- GRMHD study of accreting massive black hole binaries in astrophysical environment: a review
- On the behaviour of eccentric sub-pc massive black hole binaries embedded in massive discs
- Radiation Magnetohydrodynamic Simulation of sub-Eddington Circumbinary Disk around an Equal-mass Massive Black Hole Binary