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Noncollinear Spin Current for Switching of Chiral Magnetic Textures

Dongwook Go, Moritz Sallermann, Fabian R. Lux, Stefan Blügel, Olena Gomonay, Yuriy Mokrousov

2022Physical Review Letters31 citationsDOI

Abstract

We propose a concept of noncollinear spin current, whose spin polarization varies in space even in nonmagnetic crystals. While it is commonly assumed that the spin polarization of the spin Hall current is uniform, asymmetric local crystal potential generally allows the spin polarization to be noncollinear in space. Based on microscopic considerations, we demonstrate that such noncollinear spin Hall currents can be observed, for example, in layered Kagome Mn_{3}X (X=Ge, Sn) compounds. Moreover, by referring to atomistic spin dynamics simulations we show that noncollinear spin currents can be used to switch the chiral spin texture of Mn_{3}X in a deterministic way even in the absence of an external magnetic field. Our theoretical prediction can be readily tested in experiments, which will open a novel route toward electric control of complex spin structures in noncollinear antiferromagnets.

Topics & Concepts

Condensed matter physicsPhysicsSpin polarizationSpin Hall effectSpin (aerodynamics)Polarization (electrochemistry)Magnetic fieldSpin structureAntiferromagnetismElectronQuantum mechanicsPhysical chemistryChemistryThermodynamicsTopological Materials and PhenomenaAdvanced Condensed Matter PhysicsQuantum and electron transport phenomena
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