Analytical Solutions for Geodesic Equation in Black Hole Spacetimes
DOI10.1007/978-3-319-20046-0_5zbMath1334.83026arXiv1506.01572OpenAlexW2254500459MaRDI QIDQ2800073
Eva Hackmann, Claus Lämmerzahl
Publication date: 14 April 2016
Published in: Springer Proceedings in Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1506.01572
elliptic functionsgeodesic equationhyperelliptic functionsblack hole spacetimesKerr-Newman-Taub-NUT-de Sitter spacetimeslightlike geodesic motion
Black holes (83C57) Gravitational energy and conservation laws; groups of motions (83C40) Equations of motion in general relativity and gravitational theory (83C10) Elliptic functions and integrals (33E05)
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Cites Work
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- Photons motion in charged Anti-de Sitter black holes
- Geodesics in black hole space-times
- Tata lectures on theta. I: Introduction and motivation: Theta functions in one variable. Basic results on theta functions in several variables. With the assistance of C. Musili, M. Nori, E. Previato, and M. Stillman
- Precise analytic treatment of Kerr and Kerr-(anti) de Sitter black holes as gravitational lenses
- Complete Analytic Solution of the Geodesic Equation in Schwarzschild–(Anti-)de Sitter Spacetimes
- The gravity field of a particle
- Über Planetenbewegung und Lichtbahnen im Schwarzschild- und im Reissner-Nordström-Raum
- Frame dragging and bending of light in Kerr and Kerr–(anti) de Sitter spacetimes
- Analytical solutions of bound timelike geodesic orbits in Kerr spacetime
- The gravity field of a particle. II
- A NEW LOOK AT THE PLEBAŃSKI–DEMIAŃSKI FAMILY OF SOLUTIONS
- Light bending in Schwarzschild–de Sitter: projective geometry of the optical metric
- Global Structure of the Kerr Family of Gravitational Fields
- Physical interpretation of the NUT family of solutions
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