Context. We explore the hardening of a massive black hole binary embedded in a circumbinary gas disc under a specific circumstance: when the binary and the gas are coplanar and the gas is counter-rotating. The binary has unequal mass and the interaction of the gas with the lighter secondary black hole is the main cause of the braking torque on the binary that shrinks with time. The secondary black hole, revolving in the direction opposite to the gas, experiences a drag from gas-dynamical friction and from direct accretion of part of it. Aims. In this paper, using two-dimensional (2D) hydrodynamical grid simulations we investigate the effect of changing the accretion prescriptions on the dynamics of the secondary black hole, which i...
We study the dynamics of supermassive black hole binaries embedded in circumbinary gaseous discs, wi...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
Context. We explore the hardening of a massive black hole binary embedded in a circumbinary gas disc...
We explore the hardening of a massive black hole binary embedded in a circum-binary gas disc when th...
Aims. Supermassive black hole binaries may form as a consequence of galaxy mergers. Both prograde an...
Aims. Supermassive black hole binaries may form as a consequence of galaxy mergers. Both prograde an...
We study the interplay between gas accretion and gravity torques in changing a binary elements and i...
We study the interplay between mass transfer, accretion and gravitational torques onto a black hole ...
We present the results of high-resolution numerical simulations of gas clouds falling onto binary su...
Abstract. We study the evolution of a massive black hole pair in a rotationally supported nuclear di...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
Much of the parameter space relevant to the evolution of astrophysical circumbinary accretion discs ...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
We study the inspiral of double black holes, with masses in the LISA window of detectability, orbiti...
We study the dynamics of supermassive black hole binaries embedded in circumbinary gaseous discs, wi...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
Context. We explore the hardening of a massive black hole binary embedded in a circumbinary gas disc...
We explore the hardening of a massive black hole binary embedded in a circum-binary gas disc when th...
Aims. Supermassive black hole binaries may form as a consequence of galaxy mergers. Both prograde an...
Aims. Supermassive black hole binaries may form as a consequence of galaxy mergers. Both prograde an...
We study the interplay between gas accretion and gravity torques in changing a binary elements and i...
We study the interplay between mass transfer, accretion and gravitational torques onto a black hole ...
We present the results of high-resolution numerical simulations of gas clouds falling onto binary su...
Abstract. We study the evolution of a massive black hole pair in a rotationally supported nuclear di...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
Much of the parameter space relevant to the evolution of astrophysical circumbinary accretion discs ...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
We study the inspiral of double black holes, with masses in the LISA window of detectability, orbiti...
We study the dynamics of supermassive black hole binaries embedded in circumbinary gaseous discs, wi...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...
We present a two-dimensional grid-based hydrodynamic simulation of a thin, viscous, locally isotherm...