Plane symmetric gravitational fields in (D+1)-dimensional General Relativity
Abstract
We consider plane symmetric gravitational fields within the framework of General Relativity in (D+1)-dimensional spacetime. Two classes of vacuum solutions correspond to higher-dimensional generalizations of the Rindler and Taub spacetimes. The general solutions are presented for a positive and negative cosmological constant as the only source of the gravity. Matching conditions on a planar boundary between two regions with distinct plane symmetric metric tensors are discussed. An example is considered with Rindler and Taub geometries in neighboring half-spaces. As another example, we discuss a finite thickness cosmological constant slab embedded into the Minkowski, Rindler and Taub spacetimes. The corresponding surface energy-momentum tensor is found required for matching the exterior and interior geometries.
Keywords
Cite
@article{arxiv.2406.13758,
title = {Plane symmetric gravitational fields in (D+1)-dimensional General Relativity},
author = {R. M. Avagyan and T. A. Petrosyan and A. A. Saharian and G. H. Harutyunyan},
journal= {arXiv preprint arXiv:2406.13758},
year = {2024}
}
Comments
12 pages