Cosmic spherical void via coarse-graining and averaging non-spherical structures
arXiv:1008.3420 · doi:10.1016/j.physletb.2011.02.007
Abstract
Inhomogeneous cosmological models are able to fit cosmological observations without dark energy under the assumption that we live close to the "center" of a very large-scale under-dense region. Most studies fitting observations by means of inhomogeneities also assume spherical symmetry, and thus being at (or very near) the center may imply being located at a very special and unlikely observation point. We argue that such spherical voids should be treated only as a gross first approximation to configurations that follow from a suitable smoothing out of the non-spherical part of the inhomogeneities on angular scales. In this Letter we present a toy construction that supports the above statement. The construction uses parts of the Szekeres model, which is inhomogeneous and anisotropic thus it also addresses the limitations of spherical inhomogeneities. By using the thin-shell approximation (which means that the Israel-Darmois continuity conditions are not fulfilled between the shells) we construct a model of evolving cosmic structures, containing several elongated supercluster-like structures with underdense regions between them, which altogether provides a reasonable coarse-grained description of cosmic structures. While this configuration is not spherically symmetric, its proper volume average yields a spherical void profile of 250 Mpc that roughly agrees with observations. Also, by considering a non-spherical inhomogeneity, the definition of a "center" location becomes more nuanced, and thus the constraints placed by fitting observations on our position with respect to this location become less restrictive.
6 pages, 5 figures, accepted for publication in Phys. Lett. B
References in corpus (12)
- Confronting Lemaitre-Tolman-Bondi models with Observational Cosmology
- Local Voids as the Origin of Large-angle Cosmic Microwave Background Anomalies I
- Local Voids as the Origin of Large-angle Cosmic Microwave Background Anomalies: The Effect of a Cosmological Constant
- The supernova Hubble diagram for off-center observers in a spherically symmetric inhomogeneous universe
- Szekeres Swiss-Cheese model and supernova observations
- Local Void vs Dark Energy: Confrontation with WMAP and Type Ia Supernovae
- Structure formation in the quasispherical Szekeres model
- Dark Energy or Apparent Acceleration Due to a Relativistic Cosmological Model More Complex than FLRW?
- Redshift propagation equations in the Szekeres models
- The Averaging Problem in Cosmology and Macroscopic Gravity
- Physical and Geometrical Interpretation of the epsilon <= 0 Szekeres Models
- Volume averaging in the quasispherical Szekeres model
Cited by in corpus (5)
- Redshift propagation equations in the Szekeres models
- Redshift drift in axially symmetric quasi-spherical Szekeres models
- Effect of inhomogeneities on high precision measurements of cosmological distances
- Thermodynamics and Lemaitre-Tolman-Bondi void models
- Expansion and Growth of Structure Observables in a Macroscopic Gravity Averaged Universe