Spin currents and spin-orbit torques in ferromagnetic trilayers

  • Baek, Seung-heon C.
  • Amin, Vivek P.
  • Oh, Young-Wan
  • Go, Gyungchoon
  • Lee, Seung-Jae
  • 외 5명
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초록

Magnetic torques generated through spin-orbit coupling(1-8) promise energy-efficient spintronic devices. For applications, it is important that these torques switch films with perpendicular magnetizations without an external magnetic field(9-14). One suggested approach(15) to enable such switching uses magnetic trilayers in which the torque on the top magnetic layer can be manipulated by changing the magnetization of the bottom layer. Spin currents generated in the bottom magnetic layer or its interfaces transit the spacer layer and exert a torque on the top magnetization. Here we demonstrate field-free switching in such structures and show that its dependence on the bottom-layer magnetization is not consistent with the anticipated bulk effects(15). We describe a mechanism for spin-current generation(16,17) at the interface between the bottom layer and the spacer layer, which gives torques that are consistent with the measured magnetization dependence. This other-layer-generated spin-orbit torque is relevant to energy-efficient control of spintronic devices.

키워드

PERPENDICULAR MAGNETIZATION
제목
Spin currents and spin-orbit torques in ferromagnetic trilayers
저자
Baek, Seung-heon C.Amin, Vivek P.Oh, Young-WanGo, GyungchoonLee, Seung-JaeLee, Geun-HeeKim, Kab-JinStiles, M. D.Park, Byong-GukLee, Kyung-Jin
DOI
10.1038/s41563-018-0041-5
발행일
2018-06
유형
Article
저널명
Nature Materials
17
6
페이지
509 ~ +