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Long spin coherence length and bulk-like spin–orbit torque in ferrimagnetic multilayers

  • Jiawei Yu
  • , Do Bang
  • , Rahul Mishra
  • , Rajagopalan Ramaswamy
  • , Jung Hyun Oh
  • , Hyeon Jong Park
  • , Yunboo Jeong
  • , Pham Van Thach
  • , Dong Kyu Lee
  • , Gyungchoon Go
  • , Seo Won Lee
  • , Yi Wang
  • , Shuyuan Shi
  • , Xuepeng Qiu
  • , Hiroyuki Awano
  • , Kyung Jin Lee
  • , Hyunsoo Yang*
  • *此作品的通讯作者
  • National University of Singapore
  • Toyota Technological Institute
  • Vietnamese Academy of Science and Technology
  • Korea University
  • Tongji University

科研成果: 期刊稿件文章同行评审

摘要

Spintronics relies on magnetization switching through current-induced spin torques. However, because spin transfer torque for ferromagnets is a surface torque, a large switching current is required for a thick, thermally stable ferromagnetic cell, and this remains a fundamental obstacle for high-density non-volatile applications with ferromagnets. Here, we report a long spin coherence length and associated bulk-like torque characteristics in an antiferromagnetically coupled ferrimagnetic multilayer. We find that a transverse spin current can pass through >10-nm-thick ferrimagnetic Co/Tb multilayers, whereas it is entirely absorbed by a 1-nm-thick ferromagnetic Co/Ni multilayer. We also find that the switching efficiency of Co/Tb multilayers partially reflects a bulk-like torque characteristic, as it increases with ferrimagnet thickness up to 8 nm and then decreases, in clear contrast to the 1/thickness dependence of ferromagnetic Co/Ni multilayers. Our results on antiferromagnetically coupled systems will invigorate research towards the development of energy-efficient spintronics.

源语言英语
页(从-至)29-34
页数6
期刊Nature Materials
18
1
DOI
出版状态已出版 - 1 1月 2019
已对外发布

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