We investigate stationary, self-gravitating, magnetized disks (or tori) around black holes. The models are obtained by numerically solving the coupled system of the Einstein equations and the equations of ideal general-relativistic magnetohydrodynamics. The mathematical formulation and numerical aspects of our approach are similar to those reported in previous works modeling stationary self-gravitating perfect-fluid tori, but the inclusion of magnetic fields represents a new ingredient. Following previous studies of purely hydrodynamical configurations, we construct our models assuming Keplerian rotation in the disks and both spinning and spinless black holes. We focus on the case of a toroidal distribution of the magnetic field and build a...
We present a comprehensive numerical study of the dynamics of magnetized relativistic axisymmetric t...
We present fully general-relativistic numerical evolutions of self-gravitating tori around spinning ...
International audienceWe present a semi-analytical model using the equations of general relativistic...
We investigate stationary models of magnetized, self-gravitating disks around black holes. The disks...
We present a numerical study of the dynamics of magnetized, relativistic, non-self-gravitating, axis...
We investigate models of stationary, self-gravitating, perfect-fluid tori (disks) rotating around bl...
In the present work we study the properties of accretion tori orbiting black hole. Our approach to t...
In the present work we study the properties of accretion tori orbiting black hole. Our approach to t...
We discuss a procedure to build new sequences of magnetised, equilibrium tori around Kerr black hole...
We obtain from the first principles a general-relativistic Keplerian rotation law for self-gravitati...
We present the first global simulations of self-gravitating magnetized tori. The simulations are per...
We study the properties of accretion tori orbiting Kerr black hole. Our approach to this problem com...
We discuss the problem of the formation of a large-scale magnetic field in the accretion disks aroun...
International audienceIn this paper and a companion work, we report on the first global numerical si...
We consider accretion disks around black holes at high luminosity, and the problem of the formation ...
We present a comprehensive numerical study of the dynamics of magnetized relativistic axisymmetric t...
We present fully general-relativistic numerical evolutions of self-gravitating tori around spinning ...
International audienceWe present a semi-analytical model using the equations of general relativistic...
We investigate stationary models of magnetized, self-gravitating disks around black holes. The disks...
We present a numerical study of the dynamics of magnetized, relativistic, non-self-gravitating, axis...
We investigate models of stationary, self-gravitating, perfect-fluid tori (disks) rotating around bl...
In the present work we study the properties of accretion tori orbiting black hole. Our approach to t...
In the present work we study the properties of accretion tori orbiting black hole. Our approach to t...
We discuss a procedure to build new sequences of magnetised, equilibrium tori around Kerr black hole...
We obtain from the first principles a general-relativistic Keplerian rotation law for self-gravitati...
We present the first global simulations of self-gravitating magnetized tori. The simulations are per...
We study the properties of accretion tori orbiting Kerr black hole. Our approach to this problem com...
We discuss the problem of the formation of a large-scale magnetic field in the accretion disks aroun...
International audienceIn this paper and a companion work, we report on the first global numerical si...
We consider accretion disks around black holes at high luminosity, and the problem of the formation ...
We present a comprehensive numerical study of the dynamics of magnetized relativistic axisymmetric t...
We present fully general-relativistic numerical evolutions of self-gravitating tori around spinning ...
International audienceWe present a semi-analytical model using the equations of general relativistic...