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Thermodynamics of a phase-driven proximity Josephson junction

Published 20 Sep 2019 in cond-mat.supr-con, cond-mat.mes-hall, and quant-ph | (1909.09554v2)

Abstract: We study the thermodynamic properties of a superconductor/normal metal/superconductor Josephson junction {in the short limit}. Owing to the proximity effect, such a junction constitutes a thermodynamic system where {phase difference}, supercurrent, temperature and entropy are thermodynamical variables connected by equations of state. These allow conceiving quasi-static processes that we characterize in terms of heat and work exchanged. Finally, we combine such processes to construct a Josephson-based Otto and Stirling cycles. We study the related performance in both engine and refrigerator operating mode.

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