Non-linear instability of Kerr-type Cauchy horizons
摘要
Using the general solution to the Einstein equations on intersecting null surfaces developed by Hayward, we investigate the non-linear instability of the Cauchy horizon inside a realistic black hole. Making a minimal assumption about the free gravitational data allows us to solve the field equations along a null surface crossing the Cauchy Horizon. As in the spherical case, the results indicate that a diverging influx of gravitational energy, in concert with an outflux across the CH, is responsible for the singularity. The spacetime is asymptotically Petrov type N, the same algebraic type as a gravitational shock wave. Implications for the continuation of spacetime through the singularity are briefly discussed.
引用
@article{arxiv.gr-qc/9501025,
title = {Non-linear instability of Kerr-type Cauchy horizons},
author = {Patrick R Brady and Chris M Chambers},
journal= {arXiv preprint arXiv:gr-qc/9501025},
year = {2016}
}
备注
11 pages RevTeX, two postscript figures included using epsf.sty