English

Entropy of Contracting Universe in Cyclic Cosmology

High Energy Physics - Theory 2008-11-26 v1

Abstract

Following up a recent proposal \cite{BF} for a cyclic model based on phantom dark energy, we examine the content of the contracting universe (cu) and its entropy ScuS_{cu}. We find that beyond dark energy the universe contains on average zero or at most a single photon which if present immediately after turnaround has infinitesimally energy which subsequently blue shifts to produce e+ee^+e^- pairs. These statements are independent of the equation of state ω=p/ρ\omega = p/\rho of dark energy provided ω<1\omega < -1. Thus Scu=0S_{cu} = 0 and if observations confirm ω<1\omega < -1 the entropy problem is solved. We discuss the absence of a theoretical lower bound on ϕ=ω+1\phi = |\omega + 1|, then describe an anthropic fine tuning argument that renders unlikely extremely small ϕ\phi. The present bound ϕ0.1\phi \lesssim 0.1 already implies a time until turnaround of (tTt0)100(t_T - t_0) \gtrsim 100 Gy.

Keywords

Cite

@article{arxiv.hep-th/0703162,
  title  = {Entropy of Contracting Universe in Cyclic Cosmology},
  author = {Lauris Baum and Paul H. Frampton},
  journal= {arXiv preprint arXiv:hep-th/0703162},
  year   = {2008}
}

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5 pages latex