Averaging in Spherically Symmetric Cosmology
arXiv:gr-qc/0607079 · doi:10.1103/PhysRevD.75.043506
Abstract
In the macroscopic gravity approach to the averaging problem in cosmology, the Einstein field equations on cosmological scales are modified by appropriate gravitational correlation terms. We study the averaging problem within the class of spherically symmetric cosmological models. That is, we shall take the microscopic equations and effect the averaging procedure to determine the precise form of the correlation tensor in this case. In particular, by working in volume preserving coordinates, we calculate the form of the correlation tensor under some reasonable assumptions on the form for the inhomogeneous gravitational field and matter distribution. We find that the correlation tensor in a FLRW background must be of the form of a spatial curvature. Inhomogeneities and spatial averaging, through this spatial curvature correction term, can have a very significant dynamical effect on the dynamics of the Universe and cosmological observations; in particular, we discuss whether spatial averaging might lead to a more conservative explanation of the observed acceleration of the Universe (without the introduction of exotic dark matter fields). We also find that the correlation tensor for a non-FLRW background can be interpreted as the sum of a spatial curvature and an anisotropic fluid. This may lead to interesting effects of averaging on astrophysical scales. We also discuss the results of averaging an inhomogeneous Lemaitre-Tolman-Bondi solution as well as calculations of linear perturbations (that is, the back-reaction) in an FLRW background, which support the main conclusions of the analysis.
References in corpus (32)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- The Cosmological Constant and Dark Energy
- Cosmological Constant - the Weight of the Vacuum
- The 3D power spectrum of galaxies from the SDSS
- Non-Baryonic Dark Matter - Observational Evidence and Detection Methods
- Rotation Curves of Spiral Galaxies
- On average properties of inhomogeneous fluids in general relativity I: dust cosmologies
- The Emergent Universe: inflationary cosmology with no singularity
- Dark Energy Anisotropic Stress and Large Scale Structure Formation
- The Emergent Universe: An Explicit Construction
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Interpretation of the TT and TE Angular Power Spectrum Peaks
- On average properties of inhomogeneous fluids in general relativity II: perfect fluid cosmologies
- On cosmic acceleration without dark energy
- Dark energy from backreaction
- Can the Acceleration of Our Universe Be Explained by the Effects of Inhomogeneities?
- A Local Void and the Accelerating Universe
- Back Reaction And Local Cosmological Expansion Rate
- The universe seen at different scales
- Cosmological Solutions in Macroscopic Gravity
- Cosmological parameters are dressed
- Can superhorizon cosmological perturbations explain the acceleration of the universe?
- Galactic Potentials
- Regional averaging and scaling in relativistic cosmology
- Backreaction of inhomogeneities on the expansion: the evolution of cosmological parameters
- Cosmic Microwave Background, Accelerating Universe and Inhomogeneous Cosmology
- Constraints on backreaction in dust universes
- Can superhorizon perturbations drive the acceleration of the Universe?
- On globally static and stationary cosmologies with or without a cosmological constant and the Dark Energy problem
- Do Large-Scale Inhomogeneities Explain Away Dark Energy?
- Backreaction in the Lemaitre-Tolman-Bondi model
- Effective refractive index tensor for weak field gravity
- New variables for the Lema\^ıtre-Tolman-Bondi dust solutions
Cited by in corpus (35)
- Dark Energy from structure: a status report
- Structure and evolution of self-gravitating objects and the orthogonal splitting of the Riemann tensor
- Does the growth of structure affect our dynamical models of the universe? The averaging, backreaction and fitting problems in cosmology
- Exact solution to the averaging problem in cosmology
- Dynamical Dark Energy or Simply Cosmic Curvature?
- Tilted Lemaitre-Tolman-Bondi Spacetimes: Hydrodynamic and Thermodynamic Properties
- On the onset of cosmological backreaction
- Lemaitre-Tolman-Bondi dust spacetimes: Symmetry properties and some extensions to the dissipative case
- The Spatial Averaging Limit of Covariant Macroscopic Gravity - Scalar Corrections to the Cosmological Equations
- Back-reaction and effective acceleration in generic LTB dust models
- Examples of backreaction of small scale inhomogeneities in cosmology
- Averaging Robertson-Walker Cosmologies
- Inhomogeneous cosmology and backreaction: Current status and future prospects
- Backreaction of Cosmological Perturbations in Covariant Macroscopic Gravity
- Covariant coarse-graining of inhomogeneous dust flow in General Relativity
- A Complete Cosmological Solution to the Averaged Einstein Field Equations as found in Macroscopic Gravity
- Averaging geometrical objects on a differentiable manifold
- Observational Constraints on the Averaged Universe
- Non-parametric Dark Energy Degeneracies
- Weighed scalar averaging in LTB dust models, part I: statistical fluctuations and gravitational entropy
- Hyperbolically symmetric versions of Lemaitre-Tolman-Bondi spacetimes
- Averaging in cosmological models using scalars
- Spherically Symmetric Solutions in Macroscopic Gravity
- Backreaction for Einstein-Rosen waves coupled to a massless scalar field
- Light propagation in the averaged universe
- Backreaction: Gauge and Frame Dependences
- On the physical effects of consistent cosmological averaging
- Peculiar anisotropic stationary spherically symmetric solution of Einstein equations
- Averaged Lemaître-Tolman-Bondi dynamics
- Expansion and Growth of Structure Observables in a Macroscopic Gravity Averaged Universe
- Cosmological backreaction in higher-derivative gravity expansions
- Observational Cosmology in Macroscopic Gravity
- Unimodular Gravity and Averaging
- An Almost-FLRW Universe as the Averaged Geometry in Macroscopic Gravity
- Spherical and Plane Symmetric Solutions in Macroscopic Gravity