Analytical approximations to charged black hole solutions in Einstein-Maxwell-Weyl gravity
arXiv:2308.08123 · doi:10.3390/universe9080371
Abstract
The Homotopy Analysis Method (HAM) is a useful method to derive analytical approximate solutions of black holes in modified gravity theories. In this paper, we study the Einstein-Weyl gravity coupled with Maxwell field, and obtain analytical approximation solutions for charged black holes by using the HAM. It is found that the analytical approximate solutions are sufficiently accurate in the entire spacetime outside the black hole's event horizon, and also consistent with numerical ones for charged black holes in the Einstein-Maxwell-Weyl gravity.
17 pages, 6 figures. arXiv admin note: text overlap with arXiv:2308.03506
References in corpus (5)
- Black Holes in Higher-Derivative Gravity
- New parametrization for spherically symmetric black holes in metric theories of gravity
- (Anti-) de Sitter Electrically Charged Black Hole Solutions in Higher-Derivative Gravity
- Analytical approximate solutions for scalarized AdS black holes
- Analytic expression of perturbations of Schwarzschild spacetime via Homotopy Analysis Method