English

Cosmic microwave background radiation temperature in a dissipative universe

Cosmology and Nongalactic Astrophysics 2015-08-10 v3 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

The relationship between the cosmic microwave background radiation temperature and the redshift, i.e., the TT--zz relation, is examined in a phenomenological dissipative model. The model contains two constant terms, as if a nonzero cosmological constant Λ\Lambda and a dissipative process are operative in a homogeneous, isotropic, and spatially flat universe. The TT--zz relation is derived from a general radiative temperature law, as appropriate for describing nonequilibrium states in a creation of cold dark matter (CCDM) model. Using this relation, the radiation temperature in the late universe is calculated as a function of a dissipation rate ranging from μ~=0\tilde{\mu} =0, corresponding to a nondissipative Λ\LambdaCDM model, to μ~=1\tilde{\mu} =1, corresponding to a fully dissipative CCDM model. The TT--zz relation for μ~=0\tilde{\mu} =0 is linear for standard cosmology and is consistent with observations. However, with increasing dissipation rate μ~\tilde{\mu}, the radiation temperature gradually deviates from a linear law because the effective equation-of-state parameter varies with time. When the background evolution of the universe agrees with a fine-tuned pure Λ\LambdaCDM model, the TT--zz relation for low μ~\tilde{\mu} matches observations, whereas the TT--zz relation for high μ~\tilde{\mu} does not. Previous work also found that a weakly dissipative model accords with measurements of a growth rate for clustering related to structure formations. These results imply that low dissipation is likely for the universe. The weakly dissipative model should be further constrained by recent observations.

Keywords

Cite

@article{arxiv.1503.05895,
  title  = {Cosmic microwave background radiation temperature in a dissipative universe},
  author = {Nobuyoshi Komatsu and Shigeo Kimura},
  journal= {arXiv preprint arXiv:1503.05895},
  year   = {2015}
}

Comments

Final version accepted for publication in PRD. References are updated. [11 pages, 6 figures, and 1 table]