The significance of anisotropic signals hiding in the type Ia supernovae
arXiv:1604.07505 · doi:10.1093/mnras/stw995
Abstract
We use two different methods, i.e., dipole-fitting (DF) and hemisphere comparison (HC), to search for the anisotropic signals hiding in the Union2.1 data set. We find that the directions of maximum matter density derived using these two methods are about away from each other. We construct four Union2.1-like mock samples to test the statistical significance of these two methods. It is shown that DF method is statistically significant, while HC method is strongly biased by the distribution of data points in the sky. Then we assume that the anisotropy of distance modulus is mainly induced by the anisotropy of matter density, which is modeled to be the dipole form . We fit our model to Union2.1, and find that the direction of maximum matter density is well consistent with the direction derived using DF method, but it is very different from the direction previously claimed. Monte Carlo simulations show that our method is statistically more significant than HC method, although it is not as significant as DF method. The statistical significance can be further improved if the data points are homogeneously distributed in the sky. Due to the low quality of present supernovae data, however, it is still premature to claim that the Universe has any preferred direction.
11 pages, 12 figures, accepted by MNRAS
References in corpus (11)
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Planck 2018 results. VII. Isotropy and Statistics of the CMB
- Spatial variation in the fine-structure constant -- new results from VLT/UVES
- Power asymmetry in WMAP and Planck temperature sky maps as measured by a local variance estimator
- Testing the Isotropy of the Universe with Type Ia Supernovae
- Probing the anisotropic expansion from supernovae and GRBs in a model-independent way
- Bianchi I meets the Hubble diagram
- Comparison between hemisphere comparison method and dipole-fitting method in tracing the anisotropic expansion of the Universe use the Union2 dataset
- Constraining anisotropy of the universe from different groups of type-Ia supernovae
- A unified description for dipoles of the fine-structure constant and SnIa Hubble diagram in Finslerian universe
- Constraining the Anisotropy of the Universe from Supernovae and Gamma-ray Bursts
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