In this paper, we study the accretion process for fluids flowing near a black hole in the context of f(T) teleparallel gravity. Specifically, by performing a dynamical analysis by a Hamiltonian system, we are able to find the sonic points. After that, we consider different isothermal test fluids in order to study the accretion process when they are falling onto the black hole. We find that these flows can be classified according to the equation of state and the black hole features. Results are compared in f(T) and f(R) gravity
A resume of fruitful interaction between analytical and numerical approach to the subjectof accretio...
The coupled hydrodynamic equations governing equatorial flows applicable to inviscid disc accretion ...
We investigate the variation of the gas and the radiation pressure in accretion disks during the inf...
In this paper, we study the accretion process for fluids flowing near a black hole in the context of...
In this paper, we study the accretion process for fluids flowing near a black hole in the context of...
In this paper, we study the accretion process for fluids flowing near a black hole in the context of...
We investigate the accretion of test fluids onto regular black holes such as Kehagias–Sfetsos black ...
Transonic accretion onto astrophysical objects is a unique example of analogue black hole realized i...
Abstract This paper deals with astrophysical accretion onto the magnetically charged Euler–Heisenber...
We assume the most general static spherically symmetric black hole metric. The accretion of any gene...
Classical black hole analogues (alternatively, the analogue systems) are fluid dynamical analogueof ...
The concept of gravitational pressure is naturally defined in the context of the teleparallel equiva...
We formulate and solve the equations governing the transonic behaviour of a general relativistic bla...
In this work we would like to address the issue of shock formation in black hole accretion discs. We...
The accretion of matter onto celestial bodies like black holes and neutron stars is a natural phenom...
A resume of fruitful interaction between analytical and numerical approach to the subjectof accretio...
The coupled hydrodynamic equations governing equatorial flows applicable to inviscid disc accretion ...
We investigate the variation of the gas and the radiation pressure in accretion disks during the inf...
In this paper, we study the accretion process for fluids flowing near a black hole in the context of...
In this paper, we study the accretion process for fluids flowing near a black hole in the context of...
In this paper, we study the accretion process for fluids flowing near a black hole in the context of...
We investigate the accretion of test fluids onto regular black holes such as Kehagias–Sfetsos black ...
Transonic accretion onto astrophysical objects is a unique example of analogue black hole realized i...
Abstract This paper deals with astrophysical accretion onto the magnetically charged Euler–Heisenber...
We assume the most general static spherically symmetric black hole metric. The accretion of any gene...
Classical black hole analogues (alternatively, the analogue systems) are fluid dynamical analogueof ...
The concept of gravitational pressure is naturally defined in the context of the teleparallel equiva...
We formulate and solve the equations governing the transonic behaviour of a general relativistic bla...
In this work we would like to address the issue of shock formation in black hole accretion discs. We...
The accretion of matter onto celestial bodies like black holes and neutron stars is a natural phenom...
A resume of fruitful interaction between analytical and numerical approach to the subjectof accretio...
The coupled hydrodynamic equations governing equatorial flows applicable to inviscid disc accretion ...
We investigate the variation of the gas and the radiation pressure in accretion disks during the inf...