Shear-free Anisotropic Cosmological Models in f(R) Gravity
arXiv:1507.03265 · doi:10.1007/s10714-016-2046-1
Abstract
We study a class of shear-free, homogeneous but anisotropic cosmological models with imperfect matter sources in the context of f(R) gravity. We show that the anisotropic stresses are related to the electric part of the Weyl tensor in such a way that they balance each other. We also show that within the class of orthogonal f(R) models, small perturbations of shear are damped, and that the electric part of the Weyl tensor and the anisotropic stress tensor decay with the expansion as well as the heat flux of the curvature fluid. Specializing in locally rotationally symmetric spacetimes in orthonormal frames, we examine the late-time behaviour of the de Sitter universe in gravity. For the Starobinsky model of f(R), we study the evolutionary behavior of the Universe by numerically integrating the Friedmann equation, where the initial conditions for the expansion, acceleration and jerk parameters are taken from observational data.
18 pages, 4 figures, comments and references added to match accepted version; to appear in General Relativity and Gravitation
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- Isotropization of the universe during inflation
- Reconstructing f(R) Gravity from a Chaplygin Scalar Field in de Sitter Spacetimes
- Extended FLRW Models: dynamical cancellation of cosmological anisotropies
- Balancing Anisotropic Curvature with Gauge Fields in a Class of Shear-Free Cosmological Models
- Bianchi models with a free massless scalar field: invariant sets and higher symmetries