English

Physical parameter space of bimetric theory and SN1a constraints

General Relativity and Quantum Cosmology 2020-10-20 v2 Cosmology and Nongalactic Astrophysics

Abstract

Bimetric theory describes a massless and a massive spin-2 field with fully non-linear (self-)interactions. It has a rich phenomenology and has been successfully tested with several data sets. However, the observational constraints have not been combined in a consistent framework, yet. We propose a parametrization of bimetric solutions in terms of the effective cosmological constant Λ\Lambda and the mass mFPm_\mathrm{FP} of the spin-2 field as well as its coupling strength to ordinary matter αˉ\bar\alpha. This simplifies choosing priors in statistical analysis and allows to directly constrain these parameters with observational data not only from local systems but also from cosmology. By identifying the physical vacuum of bimetric theory these parameters are uniquely determined. We work out the dictionary for the new parametrization for various submodels and present the implied consistency constraints on the physical parameter space. We then apply the dictionary to derive observational constraints from SN1a on the physical parameters. As a result we find that even self-accelerating models with a heavy spin-2 field are in perfect agreement with current supernova data.

Keywords

Cite

@article{arxiv.2003.03382,
  title  = {Physical parameter space of bimetric theory and SN1a constraints},
  author = {Marvin Lüben and Angnis Schmidt-May and Jochen Weller},
  journal= {arXiv preprint arXiv:2003.03382},
  year   = {2020}
}