Newtonian as well as special relativistic dynamics are used to study the stability of orbits of a test particle moving around a black hole with a dipolar halo. The black hole is modeled by either the usual monopole potential or the Paczyriki-Wiita pseudo-Newtonian potential. The full general relativistic similar case is also considered. The Poincare section method and the Lyapunov characteristic exponents show that the orbits for the pseudo-Newtonian potential models are more unstable than the corresponding general relativistic geodesics.368271672
We find that the model of a black hole plus an exterior halo of quadrupoles and octopoles recently p...
A generalized Newtonian potential is derived from the geodesic motion of test particles in Schwarzsc...
The occurrence of chaos for test particles moving around a slowly rotating black hole with a dipolar...
Newtonian as well as special relativistic dynamics are used to study the stability of orbits of a t...
The consequences of two key approximations of accretion-disc physics near black holes are studied in...
We study the escape dynamics of test particles in general-relativistic gravitational fields generate...
We investigate the (conservative) dynamics of binary black holes using the Hamiltonian formulation o...
The loss of complete geodesic integrability is one of the important consequences (and thus indicator...
The exact solution to the Einstein equations that represents a static axially symmetric source defor...
AbstractWe use pseudo-Newtonian potentials to compute the scalar radiation emitted by a source orbit...
We describe a pseudo-Newtonian potential which, to within 1% error at all angular momenta, reproduce...
We investigate the dynamics of the Papapetrou equations in Kerr spacetime. These equations provide a...
We investigate the dynamics of relativistic spinning test particles in the spacetime of a rotating b...
A solution of the Einstein equations that represents the superposition of a Schwarzschild black hole...
ABSTRACT Two pseudo-Newtonian potentials, which approximate the angular and epicyclic frequencies of...
We find that the model of a black hole plus an exterior halo of quadrupoles and octopoles recently p...
A generalized Newtonian potential is derived from the geodesic motion of test particles in Schwarzsc...
The occurrence of chaos for test particles moving around a slowly rotating black hole with a dipolar...
Newtonian as well as special relativistic dynamics are used to study the stability of orbits of a t...
The consequences of two key approximations of accretion-disc physics near black holes are studied in...
We study the escape dynamics of test particles in general-relativistic gravitational fields generate...
We investigate the (conservative) dynamics of binary black holes using the Hamiltonian formulation o...
The loss of complete geodesic integrability is one of the important consequences (and thus indicator...
The exact solution to the Einstein equations that represents a static axially symmetric source defor...
AbstractWe use pseudo-Newtonian potentials to compute the scalar radiation emitted by a source orbit...
We describe a pseudo-Newtonian potential which, to within 1% error at all angular momenta, reproduce...
We investigate the dynamics of the Papapetrou equations in Kerr spacetime. These equations provide a...
We investigate the dynamics of relativistic spinning test particles in the spacetime of a rotating b...
A solution of the Einstein equations that represents the superposition of a Schwarzschild black hole...
ABSTRACT Two pseudo-Newtonian potentials, which approximate the angular and epicyclic frequencies of...
We find that the model of a black hole plus an exterior halo of quadrupoles and octopoles recently p...
A generalized Newtonian potential is derived from the geodesic motion of test particles in Schwarzsc...
The occurrence of chaos for test particles moving around a slowly rotating black hole with a dipolar...