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- W4200358024 abstract "Spin-orbit torque enables the electrical control of the orientation of ferromagnets' or antiferromagnets' order parameter. In this work we consider antiferromagnets in which the magnetic sublattices are connected by inversion+time reversal symmetry, and in which the exchange and anisotropy energies are similar in magnitude. We identify the staggered dampinglike spin-orbit torque as the key mechanism for electrical excitation of the Néel vector for this case. To illustrate this scenario, we examine the 2-d Van der Waals antiferromagnetic bilayer CrI3, in the n-doped regime. Using a combination of first-principles calculations of the spin-orbit torque and an analysis of the ensuing spin dynamics, we show that the deterministic electrical switching of the Néel vector is the result of dampinglike spin-orbit torque which is staggered on the magnetic sublattices." @default.
- W4200358024 created "2021-12-31" @default.
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- W4200358024 date "2021-12-10" @default.
- W4200358024 modified "2023-09-28" @default.
- W4200358024 title "Intrinsic staggered spin-orbit torque for the electrical control of antiferromagnets: Application to <mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML><mml:msub><mml:mi mathvariant=normal>CrI</mml:mi><mml:mn>3</mml:mn></mml:msub></mml:math>" @default.
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- W4200358024 doi "https://doi.org/10.1103/physrevb.104.224414" @default.
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