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Entanglement boost for extractable work from ensembles of quantum batteries

Physical Review E · 2013 · Vol. 87(4) · pp. 042123–042123
Robert AlickiM. Fannes

Abstract

Motivated by the recent interest in thermodynamics of micro- and mesoscopic quantum systems we study the maximal amount of work that can be reversibly extracted from a quantum system used to temporarily store energy. Guided by the notion of passivity of a quantum state we show that entangling unitary controls extract in general more work than independent ones. In the limit of a large number of copies one can reach the thermodynamical bound given by the variational principle for the free energy.

Advanced Thermodynamics and Statistical MechanicsQuantum Information and CryptographyQuantum Mechanics and ApplicationsMesoscopic physicsQuantum entanglementUnitary stateWork (physics)QuantumQuantum thermodynamicsStatistical physicsQuantum discordPhysicsQuantum mechanics
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Cited by
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References
The quantum open system as a model of the heat engine
Journal of Physics A Mathematical and General · 1979 · 738 citations
Maximal work extraction from finite quantum systems
Europhysics Letters (EPL) · 2004 · 583 citations
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Entanglement boost for extractable work from ensembles of quantum batteries · Scinovex