Supernovae as seen by off-center observers in a local void
arXiv:0909.4723 · doi:10.1088/1475-7516/2010/05/006
Abstract
Inhomogeneous universe models have been proposed as an alternative explanation for the apparent acceleration of the cosmic expansion that does not require dark energy. In the simplest class of inhomogeneous models, we live within a large, spherically symmetric void. Several studies have shown that such a model can be made consistent with many observations, in particular the redshift--luminosity distance relation for type Ia supernovae, provided that the void is of Gpc size and that we live close to the center. Such a scenario challenges the Copernican principle that we do not occupy a special place in the universe. We use the first-year Sloan Digital Sky Survey-II supernova search data set as well as the Constitution supernova data set to put constraints on the observer position in void models, using the fact that off-center observers will observe an anisotropic universe. We first show that a spherically symmetric void can give good fits to the supernova data for an on-center observer, but that the two data sets prefer very different voids. We then continue to show that the observer can be displaced at least fifteen percent of the void scale radius from the center and still give an acceptable fit to the supernova data. When combined with the observed dipole anisotropy of the cosmic microwave background however, we find that the data compells the observer to be located within about one percent of the void scale radius. Based on these results, we conclude that considerable fine-tuning of our position within the void is needed to fit the supernova data, strongly disfavouring the model from a Copernican principle point of view.
20 pages, 6 figures, matches the published version
References in corpus (20)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- 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
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- Measuring the Baryon Acoustic Oscillation scale using the SDSS and 2dFGRS
- First-year Sloan Digital Sky Survey-II (SDSS-II) Supernova Results: Hubble Diagram and Cosmological Parameters
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- Confronting Lemaitre-Tolman-Bondi models with Observational Cosmology
- First-Year Sloan Digital Sky Survey-II (SDSS-II) Supernova Results: Constraints on Non-Standard Cosmological Models
- 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
- Looking the void in the eyes - the kSZ effect in LTB models
- Can we avoid dark energy?
- The supernova Hubble diagram for off-center observers in a spherically symmetric inhomogeneous universe
- The radial BAO scale and Cosmic Shear, a new observable for Inhomogeneous Cosmologies
- The Velocity Field of the Local Universe from Measurements of Type Ia Supernovae
- Cosmic Parallax: possibility of detecting anisotropic expansion of the universe by very accurate astrometry measurements
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- Searching for a Cosmological Preferred Axis: Union2 Data Analysis and Comparison with Other Probes
- Establishing homogeneity of the universe in the shadow of dark energy
- Observational constraints on inhomogeneous cosmological models without dark energy
- Precision cosmology defeats void models for acceleration
- Curvature vs Distances: testing the FLRW cosmology
- Real-time Cosmology
- Testing the Copernican principle by constraining spatial homogeneity
- The Cosmic Microwave Background in an Inhomogeneous Universe - why void models of dark energy are only weakly constrained by the CMB
- Topology and Dark Energy: Testing Gravity in Voids
- Is there a concordance value for ?
- Exploring the evidence for a large local void with supernovae Ia data
- Generalized LTB model with Inhomogeneous Isotropic Dark Energy: Observational Constraints
- The KBC Void: Consistency with Supernovae Type Ia and the Kinematic SZ Effect in a LTB Model
- A Cosmological Underdensity Does Not Solve the Hubble Tension
- Effects of voids on the reconstruction of the equation of state of Dark Energy
- Interpreting the CMB aberration and Doppler measurements: boost or intrinsic dipole?
- Lensing in the Geodesic Light-Cone coordinates and its (exact) illustration to an off-center observer in Lemaître-Tolman-Bondi models
- Spatial and temporal tuning in void models for acceleration
- On the role of shear in cosmological averaging II: large voids, non-empty voids and a network of different voids
- Testing LTB Void Models Without the Cosmic Microwave Background or Large Scale Structure: New Constraints from Galaxy Ages
- High-z Supernova Type Ia Data: non-Gaussianity and Direction Dependence
- Stephani Cosmology: Entropically Viable But Observationally Challenged
- Off-center observers versus supernovae in inhomogeneous pressure universes
- Inhomegeneous cosmological models and fine-tuning of the initial state