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Thermal Stability, P-V Criticality and Heat Engine of Charged Rotating Accelerating Black Holes

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arxiv 1906.09478 v4 pith:Z7EQBBTG submitted 2019-06-22 hep-th

classification hep-th
keywords blackheatefficiencyenginethermodynamicholesstabilityaccelerating
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

In this paper, we study thermodynamic features of the charged rotating accelerating black holes in anti-de Sitter spacetime. First, we consider these black holes as the thermodynamic systems and analyze thermal stability/instability through the use of heat capacity in the canonical ensemble. We also investigate the effects of angular momentum, electric charge and string tension on the thermodynamic quantities and stability of the system. Considering the known relation between pressure and the cosmological constant, we extract the critical quantities and discuss how the mentioned parameters affect them. Then, we construct a heat engine by taking into account this black hole as the working substance, and obtain the heat engine efficiency by considering a rectangle heat cycle in the $P-V$ plane. We examine the effects of black hole parameters on the efficiency and analyze their effective roles. Finally, by comparing the engine efficiency with Carnot efficiency, we investigate conditions in order to have a consistent thermodynamic second law.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Charged accelerating AdS black hole of $f(R)$ gravity and the Joule-Thomson expansion

    gr-qc 2019-08 reject novelty 3.0 of 10

    For a charged accelerating AdS black hole in constant-curvature f(R) gravity, the paper claims van der Waals-like critical behavior and computes Joule-Thomson inversion curves whose ratio T_i^min/T_c is set to 1/2 by ...

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