Test Particle Motion in the Born-Infeld Black Hole
arXiv:1412.3569 · doi:10.1103/PhysRevD.92.024052
Abstract
In this work we review the classification of geodesics of massive test particles in the gravitational background of the black hole solutions of Einstein-Born-Infeld spacetime. Even though some features are quite similar to those of Reissner-Nordström spacetime there are also important differences, particularly those related to the effective potential governing the geodesic motion. Explicit solutions involving Weierstrass functions are given for a pair of specific scenarios.
10 pages, 8 figures
References in corpus (3)
- Extended phase space thermodynamics for charged and rotating black holes and Born-Infeld vacuum polarization
- Geodesics of electrically and magnetically charged test particles in the Reissner-Nordström space-time: analytical solutions
- Analytic treatment of complete and incomplete geodesics in Taub-NUT space-times
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- Nonlinear extensions of gravitating dyons: from NUT wormholes to Taub-Bolt instantons
- Entropy bound in Einstein-Born-Infeld black holes
- Perturbative deflection angles of timelike rays
- Different Regular Black Holes: Geodesic Structures of Test Particles
- Geodesic structure of a noncommutative black hole