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Holographic heat engines and static black holes: a general efficiency formula

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arxiv 1801.07425 v3 pith:EMTHNIP5 submitted 2018-01-23 hep-th

classification hep-th
keywords efficiencyblackenginesformulastaticderiveenginegeneral
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abstract

We study the efficiency of holographic heat engines in the context of extended black hole thermodynamics, where the cosmological constant becomes a dynamical variable. By taking the working substance as a static black hole (i.e. a space-time with vanishing $C_V$) we derive an exact and analytic efficiency formula for virtually any engine defined by a cycle in the $p-V$ plane. This formula gives a simple criteria which completely resolves the benchmarking program for static black holes and shows that for any given engine there is an infinite family of tractable deformations which leave the efficiency invariant. We also derive an upper bound for the efficiency that holds for general engines.

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  1. Effects of quantum corrections on the criticality and efficiency of black holes surrounded by a perfect fluid

    gr-qc 2019-08 conditional novelty 5.0 of 10

    For a quantum-corrected Schwarzschild black hole in a Kiselev perfect fluid, first-order PV criticality appears when the fluid parameter satisfies omega > -1/3 and omega differs from zero, while a Hawking-Page-like tr...

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