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Quantum thermodynamic cycles and quantum heat engines

Physical Review E · 2007 · Vol. 76(3) · pp. 031105–031105
H. T. QuanYu-xi LiuC. P. SunFranco Nori

Abstract

In order to describe quantum heat engines, here we systematically study isothermal and isochoric processes for quantum thermodynamic cycles. Based on these results the quantum versions of both the Carnot heat engine and the Otto heat engine are defined without ambiguities. We also study the properties of quantum Carnot and Otto heat engines in comparison with their classical counterparts. Relations and mappings between these two quantum heat engines are also investigated by considering their respective quantum thermodynamic processes. In addition, we discuss the role of Maxwell's demon in quantum thermodynamic cycles. We find that there is no violation of the second law, even in the existence of such a demon, when the demon is included correctly as part of the working substance of the heat engine.

Advanced Thermodynamics and Statistical MechanicsQuantum Mechanics and ApplicationsQuantum Electrodynamics and Casimir EffectCarnot cycleHeat engineQuantum thermodynamicsStirling engineThermodynamic cycleQuantumMaxwell's demonSecond law of thermodynamicsIsochoric processThermodynamics
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References
On the generators of quantum dynamical semigroups
Communications in Mathematical Physics · 1976 · 7,278 citations
<i>Thermodynamics and an Introduction to Thermostatistics</i>
American Journal of Physics · 1987 · 2,099 citations
Efficiency of a Carnot engine at maximum power output
American Journal of Physics · 1975 · 2,292 citations
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