New Constraints on Anisotropic Expansion from Supernovae Type Ia
Abstract
We re-examine the contentious question of constraints on anisotropic expansion from Type Ia supernovae (SNIa) in the light of a novel determination of peculiar velocities, which are crucial to test isotropy with supernovae out to distances Mpc. We re-analyze the Joint Light-Curve Analysis (JLA) Supernovae (SNe) data, improving on previous treatments of peculiar velocity corrections and their uncertainties (both statistical and systematic) by adopting state-of-the-art flow models constrained independently via the 2M galaxy redshift compilation. We also introduce a novel procedure to account for colour-based selection effects, and adjust the redshift of low- SNe self-consistently in the light of our improved peculiar velocity model. We adopt the Bayesian hierarchical model \texttt{BAHAMAS} to constrain a dipole in the distance modulus in the context of the CDM model and the deceleration parameter in a phenomenological Cosmographic expansion. We do not find any evidence for anisotropic expansion, and place a tight upper bound on the amplitude of a dipole, (95\% credible interval) in a CDM setting, and in the Cosmographic expansion approach. Using Bayesian model comparison, we obtain posterior odds in excess of 900:1 (640:1) against a constant-in-redshift dipole for CDM (the Cosmographic expansion). In the isotropic case, an accelerating universe is favoured with odds of with respect to a decelerating one.
Keywords
Cite
@article{arxiv.2108.12497,
title = {New Constraints on Anisotropic Expansion from Supernovae Type Ia},
author = {W. Rahman and R. Trotta and S. S. Boruah and M. J. Hudson and D. A. van Dyk},
journal= {arXiv preprint arXiv:2108.12497},
year = {2022}
}
Comments
25 Pages, 14 figures, submitted to MNRAS