English

Simply rotating higher dimensional black holes in Einstein-Gauss-Bonnet theory

General Relativity and Quantum Cosmology 2020-10-15 v2 High Energy Physics - Theory

Abstract

Using perturbative expansion in terms of powers of the rotation parameter aa we construct the axisymmetric and asymptotically flat black-hole metric in the DD-dimensional Einstein-Gauss-Bonnet theory. In five-dimensional spacetime we find two solutions to the field equations, describing the asymptotically flat black holes, though only one of them is perturbative in mass, that is, goes over into the Minkowski spacetime when the black-hole mass goes to zero. We obtain the perturbative black-hole solution up to the order O(αa3)O(\alpha a^3) for any DD, where α\alpha is the Gauss-Bonnet coupling, while the D=5D=5 solution which is nonperturbative in mass is found in analytic form up to the order O(αa7)O(\alpha a^7). In order to check the convergence of the expansion in aa we analyze characteristics of photon orbits in this spacetime and compute frequencies of the photon orbits and radius of the photon sphere.

Keywords

Cite

@article{arxiv.2007.10116,
  title  = {Simply rotating higher dimensional black holes in Einstein-Gauss-Bonnet theory},
  author = {R. A. Konoplya and A. Zhidenko},
  journal= {arXiv preprint arXiv:2007.10116},
  year   = {2020}
}

Comments

12 pages, 1 figure