English

Holographic Relation in Yang's Quantized Space-Time Algebra and Area-Entropy Relation in $D_0$ Brane Gas System. II

High Energy Physics - Theory 2010-06-16 v1

Abstract

We investigate a possible inner relation between the familiar Bekenstein-Hawking area-entropy relation and ours presented in a simple D0D_0 brane gas model on the basis of the kinematical holographic relation [KHR] in the Yang's quantized space-time algebra (YSTA). We find out that the relation between them is well understood through the idea of an {\it elementary} Schwarzschild black hole realized on a single [site][site] of Planckian scale in our scheme. Related arguments possibly explain the origin of a certain kind of universality as seen in η=1/4\eta =1/4 in the Bekenstein-Hawking relation and lead us to notice the similarity between the effective mass of D0D_0 brane, μS,\mu_S, inside black holes and the Hawking radiation temperature, TH.R.(=1/(8πMS))T_{H.R.} ( = 1/(8\pi M_S) ), both inversely proportional to the black hole mass MSM_S and having almost the same order of magnitude. Motivated by this fact, we introduce in our scheme an ansatz which enables us self-consistently to equate μS\mu_S to TH.R.T_{H.R.} and leads us to an area-entropy relation with η\eta slightly shifted from 1/4.1/4.

Keywords

Cite

@article{arxiv.1006.2885,
  title  = {Holographic Relation in Yang's Quantized Space-Time Algebra and Area-Entropy Relation in $D_0$ Brane Gas System. II},
  author = {Sho Tanaka},
  journal= {arXiv preprint arXiv:1006.2885},
  year   = {2010}
}

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22 pages