The Weyl tensor in Spatially Homogeneous Cosmological Models
arXiv:gr-qc/0206061 · doi:10.1088/0264-9381/19/20/311
Abstract
We study the evolution of the Weyl curvature invariant in all spatially homogeneous universe models containing a non-tilted gamma-law perfect fluid. We investigate all the Bianchi and Thurston type universe models and calculate the asymptotic evolution of Weyl curvature invariant for generic solutions to the Einstein field equations. The influence of compact topology on Bianchi types with hyperbolic space sections is also considered. Special emphasis is placed on the late-time behaviour where several interesting properties of the Weyl curvature invariant occur. The late-time behaviour is classified into five distinctive categories. It is found that for a large class of models, the generic late-time behaviour the Weyl curvature invariant is to dominate the Ricci invariant at late times. This behaviour occurs in universe models which have future attractors that are plane-wave spacetimes, for which all scalar curvature invariants vanish. The overall behaviour of the Weyl curvature invariant is discussed in relation to the proposal that some function of the Weyl tensor or its invariants should play the role of a gravitational 'entropy' for cosmological evolution. In particular, it is found that for all ever-expanding models the measure of gravitational entropy proposed by Gron and Hervik increases at late times.
25 pages, 1ps figure. Refs added. To appear in CQG
Cited by in corpus (35)
- On the evolution of universes in quadratic theories of gravity
- A dynamical systems approach to the tilted Bianchi models of solvable type
- Cosmological dynamics of exponential gravity
- The Weyl curvature conjecture and black hole entropy
- Cyclic Mixmaster Universes
- Late-time asymptotic dynamics of Bianchi VIII cosmologies
- The Futures of Bianchi type VII0 cosmologies with vorticity
- Stable Isotropic Cosmological Singularities in Quadratic Gravity
- Fluid observers and tilting cosmology
- The Asymptotic Behaviour of Tilted Bianchi type VI Universes
- Asymptotic silence-breaking singularities
- The Stability of an Isotropic Cosmological Singularity in Higher-Order Gravity
- The late-time behaviour of vortic Bianchi type VIII Universes
- Massive cosmic strings in Bianchi type II
- Bianchi II with time varying constants. Self-similar approach
- Kinematic and Weyl singularities
- Brane-world Singularities
- Thermodynamics of Shearing Massless Scalar Field Spacetimes is Inconsistent With the Weyl Curvature Hypothesis
- An Exploration of the Black Hole Entropy via the Weyl Tensor
- Indefinite Information Processing in Ever-expanding Universes
- Tilt and phantom cosmology
- Encoding cosmological futures with conformal structures
- Early universe in quantum gravity
- Bianchi VI_0&III models. Self-similar approach
- Bianchi I with variable and . Self-Similar approach
- Chaos and Brane-worlds
- Structure and stability of the Lukash plane-wave spacetime
- Big Bang in Dipole Cosmology
- About Bianchi I with VSL
- Analytic solutions for the Bianchi I universe coupled to several barotropic perfect fluids
- Time Asymmetry and Chaos in General Relativity
- Weyl Curvature Hypothesis in light of Quantum Backreaction at Cosmological Singularities or Bounces
- The Monotonicity of the Gravitational Entropy Scalar within Quiescent Cosmology
- An exploration of the black hole entropy in Gauss-Bonnet gravity via the Weyl tensor
- A note on the arrow of time in nonminimally coupled scalar field FRW cosmology