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Determination of spin torque efficiencies in heterostructures with perpendicular magnetic anisotropy

Chi‐Feng PaiMaxwell MannAik Jun TanGeoffrey S. D. Beach

Abstract

Current-induced spin-orbit torque (SOT) in magnetic heterostructures with perpendicular magnetic anisotropy is an efficient mechanism to control the magnetic moments therein. The authors present a Hall-voltage-based technique that allows them to simultaneously determine two key physical quantities describing SOT in magnetic heterostructures: the SOT efficiency and the magnitude of effective Dzyaloshinskii-Moriya interaction field. With the help of this new technique, the authors find that the spin-orbit torque, apart from the conventional spin-Hall-induced contribution, includes another geometrical component that depends on the shape of the ferromagnetic layer of the heterostructure. This opens a possibility for engineering SOT switching without any aid of external magnetic field, with possible applications for magnetic random access memory applications.

Magnetic properties of thin filmsQuantum and electron transport phenomenaMagnetic Field Sensors TechniquesCondensed matter physicsHeterojunctionMagnetic fieldFerromagnetismMagnetic anisotropySpin Hall effectMagnetic momentSpin (aerodynamics)TorquePerpendicular

Funding

  • National Science Foundation
  • Microelectronics Advanced Research Corporation
  • Defense Advanced Research Projects Agency
  • Division of Electrical, Communications and Cyber Systems
Citations
384
FWCI
20.91
field-weighted impact
References
45
Percentile
100%
vs. same field & year
Citations per year
Cited by
Roadmap of Spin–Orbit Torques
IEEE Transactions on Magnetics · 2021 · 530 citations
References
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Dynamics of Dzyaloshinskii domain walls in ultrathin magnetic films
Europhysics Letters (EPL) · 2012 · 1,076 citations
Anisotropic Superexchange Interaction and Weak Ferromagnetism
Physical Review · 1960 · 7,067 citations
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