Superconducting diode effect in unconventional 𝑝-wave magnets

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We investigate the emergence of superconducting phases, both with zero and finite Cooper-pair center-of-mass momenta, in recently proposed unconventional 𝑝-wave magnets. As a result we find that while these magnetic phases are in principle compatible with a conventional pairing state at zero field, a Fulde-Ferrell phase can generally be promoted as the leading instability under the application of a finite magnetic field. Interestingly, by calculating the efficiency of the superconducting diode effect of this finite-momentum pairing state via a Ginzburg-Landau theory, we uncover that a high efficiency can be obtained in these systems for experimentally relevant spin splittings. Therefore, our prediction reveals that the experimental discovery of these materials represents a promising platform for the construction of superconducting logic circuits that may as a consequence find various technological applications.

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FROLDI, Igor de M.; FREIRE, Hermann. Superconducting diode effect in unconventional 𝑝-wave magnets. Physical Review B, College Park, v. 114, e125115, 2026. DOI: 10.1103/mhrn-bflz. Disponível em: https://journals.aps.org/prb/abstract/10.1103/mhrn-bflz. Acesso em: 3 ago. 2026.