Motion of charged particles around a scalarized black hole in Kaluza-Klein theory
arXiv:1910.09835 · doi:10.1103/PhysRevD.101.024051
Abstract
In this article we study the geodesic motion of charged particles in the spacetime of an extremal rotating dyonic black hole in Kaluza-Klein theory. We derive the equations of motion and present their analytical solutions in terns of elliptic and hyperelliptic functions. Furthermore, we analyze the geodesic motions with the help of parametric diagrams and effective potentials.
19 pages, 6 figures
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- Mutual Influence of Photon Sphere and Non-Commutative Parameter in Various Non-Commutative Black Holes: Part I- Towards evidence for WGC
- Nutty Kaluza-Klein dyons revisited
- Hyperelliptic functions and motion in general relativity