Anisotropic expansion and SNIa: an open issue
arXiv:1402.1760 · doi:10.1016/j.physletb.2014.12.031
Abstract
We review the appropriateness of using SNIa observations to detect potential signatures of anisotropic expansion in the Universe. We focus on Union2 and SNLS3 SNIa datasets and use the hemispherical comparison method to detect possible anisotropic features. Unlike some previous works where non-diagonal elements of the covariance matrix were neglected, we use the full covariance matrix of the SNIa data, thus obtaining more realistic and not underestimated errors. As a matter of fact, the significance of previously claimed detections of a preferred direction in the Union2 dataset completely disappears once we include the effects of using the full covariance matrix. Moreover, we also find that such a a preferred direction is aligned with the orthogonal direction of the SDSS observational plane and this suggests a clear indication that the SDSS subsample of the Union2 dataset introduces a significant biased, making the detected preferred direction unphysical. We thus find that current SNIa surveys are inappropriate to test anisotropic features due to their highly non-homogeneous angular distribution in the sky. In addition, after removal of the highest inhomogeneous sub-samples, the number of SNIa is too low. Finally, we take advantage of the particular distribution of SNLS SNIa sub-sample in the SNLS3 data set, in which the observations were taken along 4 different directions. We fit each direction independently and find consistent results at the 1 level. Although the likelihoods peak at relatively different values of ,the low number of data along each direction gives rise to large errors so that the likelihoods are sufficiently broad as to overlap within 1.
12 pages, 7 figures. V2 to match published version
References in corpus (19)
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- The Sloan Digital Sky Survey-II Supernova Survey: Technical Summary
- SNLS3: Constraints on Dark Energy Combining the Supernova Legacy Survey Three Year Data with Other Probes
- The Sloan Digital Sky Survey-II Supernova Survey: Search Algorithm and Follow-up Observations
- Ellipsoidal Universe Can Solve The CMB Quadrupole Problem
- Anisotropic Dark Energy: Dynamics of Background and Perturbations
- Anisotropic Cosmological Constant and the CMB Quadrupole Anomaly
- Dipole of the luminosity distance: a direct measure of H(z)
- Probing Dark Energy Anisotropy
- Cosmology with moving dark energy and the CMB quadrupole
- Anisotropic perturbations due to dark energy
- On the Possibility of Anisotropic Curvature in Cosmology
- Anisotropic dark energy and ellipsoidal universe
- Cosmological Perturbations in Elastic Dark Energy Models
- Internal Robustness: systematic search for systematic bias in SN Ia data
- Vector and Tensor Contributions to the Luminosity Distance
- Dark energy in motion
- Dark energy rest frame and the CMB dipole
Cited by in corpus (32)
- Probing cosmic isotropy with a new X-ray galaxy cluster sample through the scaling relation
- Probing the isotropy of cosmic acceleration traced by Type Ia supernovae
- Testing the isotropy of the Universe by using the JLA compilation of type-Ia supernovae
- Probing Cosmological Isotropy With Type IA Supernovae
- Testing spatial curvature and anisotropic expansion on top of the CDM model
- Anisotropy of the Universe via the Pantheon supernovae sample revisited
- The significance of anisotropic signals hiding in the type Ia supernovae
- Screening anisotropy via energy-momentum squared gravity: CDM model with hidden anisotropy
- Constraining the anisotropy of the Universe via Pantheon supernovae sample
- Bianchi I meets the Hubble diagram
- Percent-Level Test of Isotropic Expansion Using Type Ia Supernovae
- Testing the anisotropy of cosmic acceleration from Pantheon supernovae sample
- Probing cosmological isotropy with Planck Sunyaev-Zeldovich galaxy clusters
- Weak-lensing by the large scale structure in a spatially anisotropic universe: theory and predictions
- Is there evidence for anomalous dipole anisotropy in the large-scale structure?
- Light propagation in inhomogeneous and anisotropic cosmologies
- Constraining the local variance of from directional analyses
- Searching for a cosmological preferred direction with 147 rotationally supported galaxies
- Probing the isotropy of cosmic acceleration using different supernova samples
- Non-comoving Cosmology
- Testing the isotropy of cosmic acceleration with Pantheon+ and SH0ES: A cosmographic analysis
- Asymmetry in the reconstructed deceleration parameter
- Charged Dark Matter and the tension
- Structure formation in an anisotropic universe: Eulerian perturbation theory
- Warm inflation with non-comoving scalar field and radiation fluid
- Testing the anisotropy of the universe using the simulated gravitational wave events from advanced LIGO and Virgo
- Angular distribution of cosmological parameters as a probe of inhomogeneities: a kinematic parametrisation
- Modelling spatial variations of the speed of light
- Probing the Cosmological Principle with weak lensing shear
- Constraining Temporal Oscillations of Cosmological Parameters Using Type Ia Supernovae
- Late-Time Anisotropy Sourced by a 2-Form Field Non-Minimally Coupled to Cold Dark Matter
- New Constraints on Anisotropic Expansion from Supernovae Type Ia