Gravitational quasinormal radiation of higher-dimensional black holes
arXiv:hep-th/0309030 · doi:10.1103/PhysRevD.68.124017
Abstract
We find the gravitational resonance (quasinormal) modes of the higher dimensional Schwarzschild and Reissner-Nordstrem black holes. The effect on the quasinormal behavior due to the presence of the term is investigated. The QN spectrum is totally different for different signs of . In more than four dimensions there excited three types of gravitational modes: scalar, vector, and tensor. They produce three different quasinormal spectra, thus the isospectrality between scalar and vector perturbations, which takes place for D=4 Schwarzschild and Schwarzschild-de-Sitter black holes, is broken in higher dimensions. That is the scalar-type gravitational perturbations, connected with deformations of the black hole horizon, which damp most slowly and therefore dominate during late time of the black hole ringing.
13 pages, 2 figures, several references are added