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    Intrinsic spin Nernst effect in spin-triplet superconductors

    Taiki Matsushita1,2, Youichi Yanase3, Takeshi Mizushima1, Satoshi Fujimoto1,2,4, and Ilya Vekhter5

    Phys. Rev. B 114, 154515 – Published 29 September, 2026

    DOI: https://doi.org/10.1103/n6pt-kk61

    Abstract

    We theoretically investigate the intrinsic (impurity-independent) spin Nernst effect (SNE), a spin current generation perpendicular to temperature gradients, in spin-triplet superconductors. We show that, in these systems, the SNE consists of two distinct contributions: a direct quasiparticle contribution and an indirect supercurrent contribution. The quasiparticle contribution originates from the momentum space Berry curvature generated by spin-triplet Cooper pairs. The indirect contribution arises from a compensating supercurrent that cancels the bulk thermoelectric charge current. While this contribution vanishes when the condensate has no spin polarization in momentum space, it can be comparable in magnitude to the quasiparticle contribution in nonunitary superconductors. These results demonstrate that thermoelectric spin supercurrent must be explicitly accounted for when evaluating the SNE in nonunitary superconductors.

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