4.6 Article

Linear stochastic thermodynamics for periodically driven systems

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1742-5468/2016/02/023202

Keywords

exact results; stochastic processes; stationary states

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We develop a theory of linear stochastic thermodynamics for general periodically driven, Markovian systems. Appropriate thermodynamic forces and fluxes are identified, starting from the entropy production for a Markov process. Onsager coefficients are evaluated, the Onsager-Casimir relations are verified, and explicit expressions are given for an expansion in terms of Fourier components. The results are illustrated on a periodically modulated two level system including the optimization of the power output.

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