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arxiv: 1602.02838 · v2 · pith:TZZ5QY3Nnew · submitted 2016-02-09 · ✦ hep-th

An Exact Efficiency Formula for Holographic Heat Engines

classification ✦ hep-th
keywords efficiencyblackheatholealgorithmcycleengineengines
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Further consideration is given to the efficiency of black hole heat engines that perform mechanical work via the pdV terms present in the First Law of extended gravitational thermodynamics. It is noted that when the engine cycle is a rectangle with sides parallel to the (p,V) axes, the efficiency can be written simply in terms of the mass of the black hole evaluated at the corners. Since an arbitrary cycle can be approximated to any desired accuracy by a tiling of rectangles, a general geometrical algorithm for computing the efficiency follows. A simple generalization of the algorithm renders it applicable to more general classes of heat engine, beyond the black hole context.

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Cited by 2 Pith papers

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    Stirling efficiency reaches Carnot when fixed-volume heat capacity is volume-independent, true for classical gases but not quantum or CFTs; holographic CFTs approach Carnot at large potentials with faster convergence ...

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