Testing the Copernican Principle via Cosmological Observations
arXiv:0807.2891 · doi:10.1088/1475-7516/2009/02/020
Abstract
Observations of distances to Type-Ia supernovae can be explained by cosmological models that include either a gigaparsec-scale void, or a cosmic flow, without the need for Dark Energy. Instead of invoking dark energy, these inhomogeneous models instead violate the Copernican Principle. we show that current cosmological observations (Supernovae, Baryon Acoustic Oscillations and estimates of the Hubble parameters based on the age of the oldest stars) are not able to rule out inhomogeneous anti-Copernican models. The next generation of surveys for baryonic acoustic oscillations will be sufficiently precise to either validate the Copernican Principle or determine the existence of a local Gpc scale inhomogeneity.
16 pages, 9 figures; accepted for publication in JCAP
References in corpus (25)
- New Hubble Space Telescope Discoveries of Type Ia Supernovae at z > 1: Narrowing Constraints on the Early Behavior of Dark Energy
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Cosmological Constraints from the SDSS Luminous Red Galaxies
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Temperature Analysis
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- A general test of the Copernican Principle
- Confronting Lemaitre-Tolman-Bondi models with Observational Cosmology
- Lemaitre-Tolman-Bondi model and accelerating expansion
- Time drift of cosmological redshifts as a test of the Copernican principle
- On cosmological observables in a swiss-cheese universe
- The effect of inhomogeneous expansion on the supernova observations
- A Test of the Copernican Principle
- 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
- "Swiss-Cheese" Inhomogeneous Cosmology & the Dark Energy Problem
- Looking the void in the eyes - the kSZ effect in LTB models
- Nonlinear Structure Formation and "Apparent" Acceleration: an Investigation
- The supernova Hubble diagram for off-center observers in a spherically symmetric inhomogeneous universe
- Mapping Luminosity-Redshift Relationship to LTB Cosmology
- The Effect of Large-Scale Inhomogeneities on the Luminosity Distance
- Light Propagation and Large-Scale Inhomogeneities
- Solving the Inverse Problem with Inhomogeneous Universes
- Pressure gradients, shell crossing singularities and acoustic oscillations - application to inhomogeneous cosmological models
- The Mass of the Cosmos
- An Inhomogeneous Model Universe Behaving Homogeneously
Cited by in corpus (52)
- Dark Energy
- Inhomogeneous cosmological models: exact solutions and their applications
- Inhomogeneity and the foundations of concordance cosmology
- Model independent tests of the standard cosmological model
- Establishing homogeneity of the universe in the shadow of dark energy
- Precision cosmology defeats void models for acceleration
- Archipelagian Cosmology: Dynamics and Observables in a Universe with Discretized Matter Content
- A (giant) void is not mandatory to explain away dark energy with a Lemaitre - Tolman model
- Szekeres Swiss-Cheese model and supernova observations
- The kSZ effect as a test of general radial inhomogeneity in LTB cosmology
- Constraints on large scale inhomogeneities from WMAP-5 and SDSS: confrontation with recent observations
- Perturbation Theory in Lemaitre-Tolman-Bondi Cosmology
- Testing the Copernican principle by constraining spatial homogeneity
- Hubble flow variance and the cosmic rest frame
- The Cosmic Microwave Background in an Inhomogeneous Universe - why void models of dark energy are only weakly constrained by the CMB
- Reconciling the local void with the CMB
- Redshift Drift in LTB Void Universes
- How close can an Inhomogeneous Universe mimic the Concordance Model?
- Cosmic spherical void via coarse-graining and averaging non-spherical structures
- The Scale of Cosmic Isotropy
- Local and non-local measures of acceleration in cosmology
- Redshift propagation equations in the Szekeres models
- Imitating accelerated expansion of the Universe by matter inhomogeneities - corrections of some misunderstandings
- Rendering Dark Energy Void
- Hubble Diagram Dispersion From Large-Scale Structure
- Supernovae as seen by off-center observers in a local void
- Probing spatial homogeneity with LTB models: a detailed discussion
- CMB observations in LTB universes: Part I: Matching peak positions in the CMB spectrum
- CMB observations in LTB universes: Part II: the kSZ effect in an LTB universe
- Inhomogeneous cosmology and backreaction: Current status and future prospects
- Testing the Cosmic Anisotropy with Supernovae Data: Hemisphere Comparison and Dipole Fitting
- Redshift drift in axially symmetric quasi-spherical Szekeres models
- The effect of inhomogeneities on the distance to the last scattering surface and the accuracy of the CMB analysis
- Cosmic age test in inhomogeneous cosmological models mimicking CDM on the light cone
- The Metric of the Cosmos from Luminosity and Age Data
- Some clarifications about Lemaître-Tolman models of the Universe used to deal with the dark energy problem
- CMB dipoles and other low-order multipoles in the quasispherical Szekeres model
- Age Problem in Lemaitre-Tolman-Bondi Void Models
- The Lindquist-Wheeler formulation of lattice universes
- Symmetry and Equivalence in Szekeres Models
- Cosmic microwave background anisotropies in the timescape cosmology
- The effect of pressure gradients on luminosity distance - redshift relations
- Regge calculus models of closed lattice universes
- Probing cosmic isotropy in the Local Universe
- Thermodynamics and Lemaitre-Tolman-Bondi void models
- Frame Rotation in the Szekeres Spacetimes
- Inhomogeneities in dusty universe - a possible alternative to dark energy?
- Complementary consistency test of the Copernican principle via Noether's theorem and machine learning forecasts
- Evolution of linear perturbations in Lemaître-Tolman-Bondi void models
- The ergodicity bias in the observed galaxy distribution
- Newtonian self-gravitating system in a relativistic huge void universe model
- Linear perturbations in spherically symmetric dust cosmologies including a cosmological constant