Tension in the Void: Cosmic Rulers Strain Inhomogeneous Cosmologies
arXiv:1201.2790 · doi:10.1088/1475-7516/2012/10/009
Abstract
New constraints on inhomogeneous Lemaître-Tolman-Bondi (LTB) models alternative to Dark Energy are presented, focusing on adiabatic profiles with space-independent Big Bang and baryon fraction. The Baryon Acoustic Oscillation (BAO) scale at early times is computed in terms of the asymptotic value and then projected to different redshifts by following the geodesics of the background metric. Additionally, a model-independent method to constraint the local expansion rate using a prior on supernovae luminosity is presented. Cosmologies described by an adiabatic GBH matter profile with Ω_{out}=1 and Ω_{out}\leq 1 are investigated using a Markov Chain Monte Carlo analysis including the latest BAO data from the WiggleZ collaboration and the local expansion rate from the Hubble Space Telescope, together with Union-II type Ia supernovae data and the position and height of the Cosmic Microwave Background acoustic peaks. The addition of BAO data at higher redshifts increases considerably their constraining power and represents a new drawback for this type of models, yielding a value of the local density parameter Ω_{in}>0.2 which is 3σapart from the value Ω_{in}<0.15 found using supernovae. The situation does not improve if the asymptotic flatness assumption is dropped, and a Bayesian analysis shows that constrained GBH models are ruled out at high confidence. We emphasize that these are purely geometric probes, that only recently have become sufficiently constraining to independently rule out the whole class of adiabatic LTB models.
37 pages, 12 figs
References in corpus (35)
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- The WiggleZ Dark Energy Survey: mapping the distance-redshift relation with baryon acoustic oscillations
- Nonlinear Evolution of Baryon Acoustic Oscillations
- A general test of the Copernican Principle
- Backreaction in late-time cosmology
- Confronting Lemaitre-Tolman-Bondi models with Observational Cosmology
- Lemaitre-Tolman-Bondi model and accelerating expansion
- A Test of the Copernican Principle
- `Eppur Si Muove': On The Motion of the Acoustic Peak in the Correlation Function
- CMB anisotropies seen by an off-center observer in a spherically symmetric inhomogeneous universe
- Living in a Void: Testing the Copernican Principle with Distant Supernovae
- Mimicking Dark Energy with Lemaitre-Tolman-Bondi Models: Weak Central Singularities and Critical Points
- Establishing homogeneity of the universe in the shadow of dark energy
- Looking the void in the eyes - the kSZ effect in LTB models
- Can we avoid dark energy?
- Testing the Void against Cosmological data: fitting CMB, BAO, SN and H0
- Scalar Perturbations on Lemaitre-Tolman-Bondi Spacetimes
- Precision cosmology defeats void models for acceleration
- The kSZ effect as a test of general radial inhomogeneity in LTB cosmology
- Local Void vs Dark Energy: Confrontation with WMAP and Type Ia Supernovae
- Analyze This! A Cosmological Constraint Package for CMBEASY
- The radial BAO scale and Cosmic Shear, a new observable for Inhomogeneous Cosmologies
- The Cosmic Microwave Background in an Inhomogeneous Universe - why void models of dark energy are only weakly constrained by the CMB
- Inhomogeneous spacetimes as a dark energy model
- Linear kinetic Sunyaev-Zel'dovich effect and void models for acceleration
- First Cosmological Constraints on Dark Energy from the Radial Baryon Acoustic Scale
- Reconciling the local void with the CMB
- Redshift Drift in LTB Void Universes
- Observational constraints on the LLTB model
- Can decaying modes save void models for acceleration?
- The isotropic blackbody CMB as evidence for a homogeneous universe
- Constraints on Lema\^ıtre-Tolman-Bondi models from Observational Hubble Parameter data
- Evolution of density perturbations in large void universe
- Topological Quintessence
Cited by in corpus (34)
- Cosmology and Fundamental Physics with the Euclid Satellite
- Cosmology and fundamental physics with the Euclid satellite
- Is the Observable Universe Consistent with the Cosmological Principle?
- Evidence for a ~300 Mpc Scale Under-density in the Local Galaxy Distribution
- Modified Gravity-GADGET: A new code for cosmological hydrodynamical simulations of modified gravity models
- A new perspective on Dark Energy modeling via Genetic Algorithms
- Testing the Copernican principle by constraining spatial homogeneity
- Current Constraints on Anisotropic and Isotropic Dark Energy Models
- Non-linear evolution of the BAO scale in alternative theories of gravity
- Probing Dark Energy in The scope of Bianchi type I Spacetime
- Probing spatial homogeneity with LTB models: a detailed discussion
- Inhomogeneous cosmology and backreaction: Current status and future prospects
- Uncertainty on w from large-scale structure
- A Cosmological Underdensity Does Not Solve the Hubble Tension
- Measuring the transition to homogeneity with photometric redshift surveys
- Galaxy correlations and the BAO in a void universe: structure formation as a test of the Copernican Principle
- Cosmological constraints from low-redshift data
- Reconstruction of the null-test for the matter density perturbations
- Halo abundances and shear in void models
- Relativistic cosmology number densities in void-Lemaitre-Tolman-Bondi models
- Physical geometry of the quasispherical Szekeres models
- Observational Constraint on Spherical Inhomogeneity with CMB and Local Hubble Parameter
- Challenges in Cosmology from the Big Bang to Dark Energy, Dark Matter and Galaxy Formation
- Testing LTB Void Models Without the Cosmic Microwave Background or Large Scale Structure: New Constraints from Galaxy Ages
- Stephani Cosmology: Entropically Viable But Observationally Challenged
- Evolution of linear perturbations in Lemaître-Tolman-Bondi void models
- Cosmological model dependence of the galaxy luminosity function: far-infrared results in the Lemaitre-Tolman-Bondi model
- Spectral Distortion in a Radially Inhomogeneous Cosmology
- Two-point correlation function of density perturbations in a large void universe
- Intrinsic energy of Lemaître-Tolman-Bondi models and cosmological implications
- Newtonian self-gravitating system in a relativistic huge void universe model
- Inhomegeneous cosmological models and fine-tuning of the initial state
- Linear perturbations in spherically symmetric dust cosmologies including a cosmological constant
- Can we remove the systematic error due to isotropic inhomogeneities?