English

Entropy Production in a Lepton-Photon Universe

Cosmology and Nongalactic Astrophysics 2017-02-02 v3 General Relativity and Quantum Cosmology

Abstract

We look at the entropy production during the lepton era in the early Universe by using a model where we exclude all particles except the leptons and photons. We assume a temperature dependent viscosity as calculated recently by one of us (Husdal 2016) with use of relativistic kinetic theory. We consider only the bulk viscosity, the shear viscosity being omitted because of spatial isotropy. The rate of entropy production is highest just before the neutrinos decouple. Our results show that the increase in entropy during the lepton era is quite small, about 0.071 % at a decoupling temperature of T=1010 KT=10^{10}~\mathrm{K}. This result is slightly smaller than that obtained earlier by Caderni and Fabbri (1977). After the neutrino decoupling, when the Universe has entered the photon era, kinetic-theory arguments no longer support the appearance of a bulk viscosity. At high temperatures and a stable particle ratio, entropy production (dσ\sigma/dTT) goes as T8T^{-8}, with the total entropy (Δσ\Delta \sigma) increasing as T7T^{-7}. These rates go slightly down just before the neutrinos decouple, where ΔσT6.2\Delta \sigma \propto T^{-6.2}.

Keywords

Cite

@article{arxiv.1610.04451,
  title  = {Entropy Production in a Lepton-Photon Universe},
  author = {Lars Husdal and Iver Brevik},
  journal= {arXiv preprint arXiv:1610.04451},
  year   = {2017}
}

Comments

8 pages, 5 figures. Second version. Accepted by Astrophysics and Space Science. Added more discussion and made one figure clearer

R2 v1 2026-06-22T16:20:53.290Z