Can decaying modes save void models for acceleration?
arXiv:1108.3068 · doi:10.1103/PhysRevD.84.123508
Abstract
The unexpected dimness of Type Ia supernovae (SNe), apparently due to accelerated expansion driven by some form of dark energy or modified gravity, has led to attempts to explain the observations using only general relativity with baryonic and cold dark matter, but by dropping the standard assumption of homogeneity on Hubble scales. In particular, the SN data can be explained if we live near the centre of a Hubble-scale void. However, such void models have been shown to be inconsistent with various observations, assuming the void consists of a pure growing mode. Here it is shown that models with significant decaying mode contribution today can be ruled out on the basis of the expected cosmic microwave background spectral distortion. This essentially closes one of the very few remaining loopholes in attempts to rule out void models, and strengthens the evidence for Hubble-scale homogeneity.
11 pages, 3 figures; discussion expanded, appendix added; version accepted to Phys. Rev. D
References in corpus (17)
- Relativistic cosmology and large-scale structure
- A general test of the Copernican Principle
- Time drift of cosmological redshifts as a test of the Copernican principle
- A Test of the Copernican Principle
- CMB anisotropies seen by an off-center observer in a spherically symmetric inhomogeneous universe
- A covariant approach for perturbations of rotationally symmetric spacetimes
- Looking the void in the eyes - the kSZ effect in LTB models
- Testing the Void against Cosmological data: fitting CMB, BAO, SN and H0
- Can we avoid dark energy?
- Scalar Perturbations on Lemaitre-Tolman-Bondi Spacetimes
- Precision cosmology defeats void models for acceleration
- The Cosmic Microwave Background in an Inhomogeneous Universe - why void models of dark energy are only weakly constrained by the CMB
- Linear kinetic Sunyaev-Zel'dovich effect and void models for acceleration
- Reconciling the local void with the CMB
- Observational constraints on the LLTB model
- Gauging the cosmic microwave background
- Spatial and temporal tuning in void models for acceleration
Cited by in corpus (39)
- Cosmology and Fundamental Physics with the Euclid Satellite
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- Is the Observable Universe Consistent with the Cosmological Principle?
- Establishing homogeneity of the universe in the shadow of dark energy
- Planck intermediate results. XIII. Constraints on peculiar velocities
- Is there a concordance value for ?
- Tests of the CMB temperature-redshift relation, CMB spectral distortions and why adiabatic photon production is hard
- Current Constraints on Anisotropic and Isotropic Dark Energy Models
- Tension in the Void: Cosmic Rulers Strain Inhomogeneous Cosmologies
- Exploring the evidence for a large local void with supernovae Ia data
- Local and non-local measures of acceleration in cosmology
- Probing Dark Energy in The scope of Bianchi type I Spacetime
- The Copernican principle in light of the latest cosmological data
- Multiple non-spherical structures from the extrema of Szekeres scalars
- Redshift drift in axially symmetric quasi-spherical Szekeres models
- Gravitational entropies in LTB dust models
- Uncertainty on w from large-scale structure
- Euclid: Forecast constraints on consistency tests of the CDM model
- Invariant characterization of the growing and decaying density modes in LTB dust models
- Some clarifications about Lemaître-Tolman models of the Universe used to deal with the dark energy problem
- Accelerating expansion or inhomogeneity? A comparison of the CDM and Lema\^ıtre - Tolman models
- Evolution of density perturbations in large void universe
- Cosmological constraints from low-redshift data
- Non perturbative effects of primordial curvature perturbations on the apparent value of a cosmological constant
- Relativistic cosmology number densities in void-Lemaitre-Tolman-Bondi models
- Physical geometry of the quasispherical Szekeres models
- Exact inhomogeneous models and the drift of light rays induced by nonsymmetric flow of the cosmic medium
- Blueshifts in the Lema\^ıtre -- Tolman models
- Conditions for low-redshift positive apparent acceleration in smooth inhomogeneous models
- A new method to determine large scale structure from the luminosity distance
- Complementary consistency test of the Copernican principle via Noether's theorem and machine learning forecasts
- Simple inhomogeneous cosmological (toy) models
- Two-point correlation function of density perturbations in a large void universe
- Spectral Distortion in a Radially Inhomogeneous Cosmology
- Beyond relativistic Lagrangian perturbation theory. I. An exact-solution controlled model for structure formation
- Topological implications of inhomogeneity
- Newtonian self-gravitating system in a relativistic huge void universe model
- Can smooth LTB models mimicking the cosmological constant for the luminosity distance also satisfy the age constraint?
- Can we remove the systematic error due to isotropic inhomogeneities?