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Entropy production along nonequilibrium quantum jump trajectories (1305.6793v2)

Published 29 May 2013 in cond-mat.stat-mech and quant-ph

Abstract: For classical nonequilibrium systems, the separation of the total entropy production into the adiabatic and nonadiabatic contributions is useful for understanding irreversibility in nonequilibrium thermodynamics. In this article, we formulate quantum analogs for driven open quantum systems describable by quantum jump trajectories by applying a quantum stochastic thermodynamics. Our main conclusions are based on a quantum formulation of the local detailed balance condition.

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