Altermagnetic Néel order generates locked electric polarization in type-II multiferroics, with a microscopic mechanism, eight symmetry categories for 2D cases, and a first-principles example in monolayer MgFe2N2.
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Altermagnetic spin splitting selects direction-selective triplet pairing in 2D d-wave metals and generates spin-locked Majorana edge states in both spin-conserving and Rashba-mixed regimes.
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Altermagnetic type-II Multiferroics with N\'{e}el-order-locked Electric Polarization
Altermagnetic Néel order generates locked electric polarization in type-II multiferroics, with a microscopic mechanism, eight symmetry categories for 2D cases, and a first-principles example in monolayer MgFe2N2.
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Direction-selective triplet pairing and spin-edge locking in altermagnetic metals
Altermagnetic spin splitting selects direction-selective triplet pairing in 2D d-wave metals and generates spin-locked Majorana edge states in both spin-conserving and Rashba-mixed regimes.