Anisotropy in Born-Infeld brane cosmology
arXiv:1103.0075 · doi:10.1103/PhysRevD.83.064014
Abstract
The accelerated expansion of the universe together with its present day isotropy has posed an interesting challenge to the numerous model theories presented over the years to describe them. In this paper, we address the above questions in the context of a brane-world model where the universe is filled with a Born-Infeld matter. We show that in such a model, the universe evolves from a highly anisotropic state to its present isotropic form which has entered an accelerated expanding phase.
7 pages, 3 figures, to appear in PRD
References in corpus (5)
- Anisotropic brane gravity with a confining potential
- Classical and quantum dynamics of confined test particles in brane gravity
- Stability of nonlinear magnetic black holes
- The Newman-Janis Algorithm, Rotating Solutions and Einstein-Born-Infeld Black Holes
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Cited by in corpus (6)
- Cosmological dynamics of brane f(R) gravity
- Thermodynamic analysis of topological black holes in Gauss-Bonnet gravity with nonlinear source
- Energy-dependent topological anti-de Sitter black holes in Gauss-Bonnet Born-Infeld gravity
- Cosmology of the non-local Proca theory
- Virial mass in warped DGP-inspired L(R) gravity
- Higher-dimensional Holographic Superconductors in Born-Infeld Electrodynamics and f(R) Gravity