Charged particle in higher dimensional weakly charged rotating black hole spacetime
arXiv:1010.2266 · doi:10.1103/PhysRevD.83.024016
Abstract
We study charged particle motion in weakly charged higher dimensional black holes. To describe the electromagnetic field we use a test field approximation and use the higher dimensional Kerr-NUT-(A)dS metric as a background geometry. It is shown that for a special configuration of the electromagnetic field the equations of motion of charged particles are completely integrable. The vector potential of such a field is proportional to one of the Killing vectors (called primary Killing vector) from the `Killing tower' of symmetry generating objects which exists in the background geometry. A free constant in the definition of the adopted electromagnetic potential is proportional to the electric charge of the higher dimensional black hole. The full set of independent conserved quantities in involution is found. It is demonstrated, that Hamilton-Jacobi equations are separable, as well as the corresponding Klein-Gordon equation and its symmetry operators.
9 pages, no figures
References in corpus (16)
- General Kerr-NUT-AdS Metrics in All Dimensions
- Motion of charged particles near weakly magnetized Schwarzschild black hole
- Complete Integrability of Geodesic Motion in General Kerr-NUT-AdS Spacetimes
- `Hidden' Symmetries of Higher Dimensional Rotating Black Holes
- Hidden Symmetry of Higher Dimensional Kerr-NUT-AdS Spacetimes
- Closed conformal Killing-Yano tensor and Kerr-NUT-de Sitter spacetime uniqueness
- Separability of Dirac equation in higher dimensional Kerr-NUT-de Sitter spacetime
- Constants of Geodesic Motion in Higher-Dimensional Black-Hole Spacetimes
- Kerr-NUT-de Sitter Curvature in All Dimensions
- Closed conformal Killing-Yano tensor and geodesic integrability
- Complete Set of Commuting Symmetry Operators for the Klein-Gordon Equation in Generalized Higher-Dimensional Kerr-NUT-(A)dS Spacetimes
- Stationary strings and branes in the higher-dimensional Kerr-NUT-(A)dS spacetimes
- Electromagnetic Field in Higher-Dimensional Black-Hole Spacetimes
- Parallel-propagated frame along null geodesics in higher-dimensional black hole spacetimes
- Hidden Symmetries of Higher-Dimensional Black Hole Spacetimes
- Solving parallel transport equations in the higher-dimensional Kerr-NUT-(A)dS spacetimes