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Dimension of quantum channel of radiation in pure Lovelock black holes

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arxiv 1401.0895 v1 pith:DXXSO3SZ submitted 2014-01-05 gr-qc

classification gr-qc
keywords dimensiondimensionalblackchannelquantumentropyspace-timesconstant
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abstract

It is known that the emission rate of entropy from a Schwarzschild black hole is exactly the same as that of a one dimensional quantum channel \cite{Beken}. We calculate the dimension of entropy emission from a $D$ dimensional pure Lovelock black holes. Our results indicate that the dimension of transmission for odd $D$ dimensional space-times is equal to $D$ and for even $D$ dimensional space-times, the dimension of quantum channel becomes $1+\epsilon (\Lambda)$, where $ \Lambda $ is cosmological constant. It is interesting that cosmological constant may put some constraint on dimension of quantum channel in even dimensional space-times. The effect of Generalized Uncertainty Principle (GUP) on the dimension of transmission of entropy for a Schwarzschild black hole is also investigated.

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  1. A note on entropy of matter in presence of gravity: status of extensivity of entropy

    gr-qc 2025-07 conditional novelty 4.0 of 10

    In a strong uniform Newtonian gravitational field, the entropy of a monoatomic ideal gas depends on the container's cross-sectional area and is extensive when particle number per unit area is fixed.

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