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Quasiclassical theory of superconducting spin-splitter effects and spin-filtering via altermagnets

Hans Gløckner Giil, Bjørnulf Brekke, Jacob Linder, and Arne Brataas

Phys. Rev. B 110, L140506 – Published 18 October, 2024Erratum Phys. Rev. B 113, 059901 (2026)

DOI: https://doi.org/10.1103/PhysRevB.110.L140506

Abstract

Conducting altermagnets have recently emerged as intriguing materials supporting strongly spin-polarized currents without magnetic stray fields. We demonstrate that altermagnets enable three key functionalities, merging superconductivity and spintronics. The first prediction is a controllable supercurrent-induced edge magnetization, which acts like a dissipationless spin-splitter effect. The second and third predictions are a Cooper pair spin-splitter and a filtering effect, respectively. These effects allow for spatial separation of triplet pairs with opposite spin polarizations and spin-selective tunneling of Cooper pairs. We derive a quasiclassical theory with associated boundary conditions that describe these phenomena and explain how they can be experimentally verified. Our results open a new path for spatial control of spin signals via triplet Cooper pairs using hybrid superconductor-altermagnet devices.

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Erratum

Erratum: Quasiclassical theory of superconducting spin-splitter effects and spin-filtering via altermagnets [Phys. Rev. B 110, L140506 (2024)]

Hans Gløckner Giil, Bjørnulf Brekke, Jacob Linder, and Arne Brataas
Phys. Rev. B 113, 059901 (2026)

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