Asymmetric scattering coupled to band geometry produces a PT-odd staggered spin polarization that generates significant NSOT in collinear antiferromagnets beyond conventional Drude processes.
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First-principles study demonstrates spin-orbit torque switching of Néel order and layer-resolved Chern marker in band-inverted antiferromagnetic bilayer MnBi2Te4.
citing papers explorer
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Asymmetric Scattering-Induced Neel Spin-Orbit Torque in Antiferromagnets
Asymmetric scattering coupled to band geometry produces a PT-odd staggered spin polarization that generates significant NSOT in collinear antiferromagnets beyond conventional Drude processes.
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Spin-orbit torque switching of N\'eel order in band-inverted antiferromagnetic bilayer MnBi$_2$Te$_4$
First-principles study demonstrates spin-orbit torque switching of Néel order and layer-resolved Chern marker in band-inverted antiferromagnetic bilayer MnBi2Te4.