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Black-hole entropy and minimal diffusion

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arxiv 1307.6122 v2 pith:BCDWWYZ3 submitted 2013-07-23 hep-th gr-qc

classification hep-thgr-qc
keywords diffusiondimensionentropyminimalscalespectraltheoryabove
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The density of states reproducing the Bekenstein-Hawking entropy-area scaling can be modeled via a nonlocal field theory. We define a diffusion process based on the kinematics of this theory and find a spectral dimension whose flow exhibits surprising properties. While it asymptotes four from above in the infrared, in the ultraviolet the spectral dimension diverges at a finite (Planckian) value of the diffusion length, signaling a breakdown of the notion of diffusion on a continuum spacetime below that scale. We comment on the implications of this minimal diffusion scale for the entropy bound in a holographic and field-theoretic context.

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