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Non-equilibrium dissipative stabilization of s- and d-wave superconductivity

Published 9 Sep 2026 in cond-mat.str-el, cond-mat.supr-con, and quant-ph | (2609.10062v1)

Abstract: Stabilizing superconductivity beyond its equilibrium regime has been one of the quests of nonequilibrium state engineering. We report the presence of nonthermal pairing gap in BCS superconductors coupled to two thermal baths, where one of the baths can be at a temperature well above the equilibrium TcT_c. Superconducting state is enabled by a highly non-equilibrium steady state stabilized by weak coupling to baths that break detailed balance condition. The steady-state is well described by a generalized Gibbs ensemble parametrized with chemical potentials for associated Bogoliubov quasiparticle. A strong, non-perturbative effect is reported for both ss-wave and dd-wave superconductors, and its possible realization in cavity-based experiments is discussed.

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