Phase transition and entropy inequality of noncommutative black holes in a new extended phase space

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Published 24 March 2017 © 2017 IOP Publishing Ltd and Sissa Medialab srl
, , Citation Yan-Gang Miao and Zhen-Ming Xu JCAP03(2017)046 DOI 10.1088/1475-7516/2017/03/046

1475-7516/2017/03/046

Abstract

We analyze the thermodynamics of the noncommutative high-dimensional Schwarzschild-Tangherlini AdS black hole with the non-Gaussian smeared matter distribution by regarding a noncommutative parameter as an independent thermodynamic variable named as the noncommutative pressure. In the new extended phase space that includes this noncommutative pressure and its conjugate variable, we reveal that the noncommutative pressure and the original thermodynamic pressure related to the negative cosmological constant make the opposite effects in the phase transition of the noncommutative black hole, i.e. the former dominates the UV regime while the latter does the IR regime, respectively. In addition, by means of the reverse isoperimetric inequality, we indicate that only the black hole with the Gaussian smeared matter distribution holds the maximum entropy for a given thermodynamic volume among the noncommutative black holes with various matter distributions.

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10.1088/1475-7516/2017/03/046