Conformal Scattering and the Goursat Problem for Dirac Fields in the Interior of Charged Spherically Symmetric Black Holes
arXiv:2101.04166 · doi:10.1142/S0129055X21500379
Abstract
We construct a conformal scattering theory for Dirac fields in the interior of a Reissner-Nordström-like black hole, between the black hole event horizon and the Cauchy horizon. The main result is a resolution of the characteristic Cauchy problem for the Dirac equation on the horizons by solving a system of wave equations and re-interpreting its solution as the components of the required Dirac solution.
13 pages, 2 figures
References in corpus (1)
Cited by in corpus (6)
- Strong Cosmic Censorship in the presence of matter: the decisive effect of horizon oscillations on the black hole interior geometry
- Conformal scattering theory for the Dirac field on Kerr spacetime
- On the Scattering of Waves inside Charged Spherically Symmetric Black Holes
- Cauchy and Goursat problems for the generalized spin zero rest-mass fields on Minkowski spacetime
- Conformal Scattering of Maxwell Potentials
- Conformal scattering theories for tensorial wave equations on Schwarzschild spacetime