Publication | Open Access
Quantum Performance of Thermal Machines over Many Cycles
102
Citations
22
References
2017
Year
Quantum ScienceQuantum PerformanceEngineeringQuantum ComputingQuantum TechnologyPhysicsQuantum Otto EngineQuantum Machine LearningQuantum Heat EnginesNatural SciencesQuantum AlgorithmComputer EngineeringQuantum Optimization AlgorithmQuantum DevicesThermodynamicsQuantum EntanglementQuantum EngineThermal Engineering
The performance of quantum heat engines is generally based on the analysis of a single cycle. We challenge this approach by showing that the total work performed by a quantum engine need not be proportional to the number of cycles. Furthermore, optimizing the engine over multiple cycles leads to the identification of scenarios with a quantum enhancement. We demonstrate our findings with a quantum Otto engine based on a two-level system as the working substance that supplies power to an external oscillator.
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