Classification of Energy Momentum Tensors in Dimensional Space-times: a Review
arXiv:gr-qc/0312064 · doi:10.1590/S0103-97332004000300034
Abstract
Recent developments in string theory suggest that there might exist extra spatial dimensions, which are not small nor compact. The framework of a great number of brane cosmological models is that in which the matter fields are confined on a brane-world embedded in five dimensions (the bulk). Motivated by this we review the main results on the algebraic classification of second order symmetric tensors in 5-dimensional space-times. All possible Segre types for a symmetric two-tensor are found, and a set of canonical forms for each Segre type is obtained. A limiting diagram for the Segre types of these symmetric tensors in 5-D is built. Two theorems which collect together some basic results on the algebraic structure of second order symmetric tensors in 5-D are presented. We also show how one can obtain, by induction, the classification and the canonical forms of a symmetric two-tensor on n-dimensional (n > 5) spaces from its classification in 5-D spaces, present the Segre types in n-D and the corresponding canonical forms. This classification of symmetric two-tensors in any n-D spaces and their canonical forms are important in the context of n-dimensional brane-worlds context and also in the framework of 11-D supergravity and 10-D superstrings.
LaTex2e, 18 pages. To appear in Braz.J.Phys (2004)
Cited by in corpus (10)
- Minimal tensors and purely electric or magnetic spacetimes of arbitrary dimension
- Energy conditions in arbitrary dimensions
- Energy Conditions and Segre Classification of Phantom Fields
- Criteria for energy conditions
- The Petrov type of the BMPV metric
- Nonstaticity with type II, III, or IV matter field in gravity
- Special Einstein's equations on Kähler manifolds
- Energy conditions for non-timelike thin shells
- An Interior Solution for the Kerr Metric: A Novel Approach
- Hawking-Ellis type of matter on Killing horizons in symmetric spacetimes