English

Local conditions for the generalized covariant entropy bound

General Relativity and Quantum Cosmology 2009-11-11 v1

Abstract

A set of sufficient conditions for the generalized covariant entropy bound given by Strominger and Thompson is as follows: Suppose that the entropy of matter can be described by an entropy current sas^a. Let kak^a be any null vector along LL and skasas\equiv -k^a s_a. Then the generalized bound can be derived from the following conditions: (i) s2πTabkakbs'\leq 2\pi T_{ab}k^ak^b, where s=ka\gradass'=k^a\grad_a s and TabT_{ab} is the stress energy tensor; (ii) on the initial 2-surface BB, s(0)1/4θ(0)s(0)\leq -{1/4}\theta(0), where θ\theta is the expansion of kak^a. We prove that condition (ii) alone can be used to divide a spacetime into two regions: The generalized entropy bound holds for all light sheets residing in the region where s<1/4θs<-{1/4}\theta and fails for those in the region where s>1/4θs>-{1/4}\theta. We check the validity of these conditions in FRW flat universe and a scalar field spacetime. Some apparent violations of the entropy bounds in the two spacetimes are discussed. These holographic bounds are important in the formulation of the holographic principle.

Keywords

Cite

@article{arxiv.gr-qc/0504002,
  title  = {Local conditions for the generalized covariant entropy bound},
  author = {Sijie Gao and Jose' P. S. Lemos},
  journal= {arXiv preprint arXiv:gr-qc/0504002},
  year   = {2009}
}

Comments

10 pages, 7 figures