Holographic Relation in Yang's Quantized Space-Time Algebra and Area-Entropy Relation in $D_0$ Brane Gas System. II
Abstract
We investigate a possible inner relation between the familiar Bekenstein-Hawking area-entropy relation and ours presented in a simple 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 of Planckian scale in our scheme. Related arguments possibly explain the origin of a certain kind of universality as seen in in the Bekenstein-Hawking relation and lead us to notice the similarity between the effective mass of brane, inside black holes and the Hawking radiation temperature, , both inversely proportional to the black hole mass 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 to and leads us to an area-entropy relation with slightly shifted from
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}
}
Comments
22 pages