Field-free switching of a perpendicular magnetic tunnel junction through the interplay of spin–orbit and spin-transfer torques

被引:21
|
作者
Mengxing Wang
Wenlong Cai
Daoqian Zhu
Zhaohao Wang
Jimmy Kan
Zhengyang Zhao
Kaihua Cao
Zilu Wang
Youguang Zhang
Tianrui Zhang
Chando Park
Jian-Ping Wang
Albert Fert
Weisheng Zhao
机构
[1] Beihang University,Fert Beijing Institute, BDBC, and School of Microelectronics
[2] Qualcomm Technologies,Department of Electrical and Computer Engineering
[3] Inc,undefined
[4] University of Minnesota,undefined
[5] Unité Mixte de Physique,undefined
[6] CNRS,undefined
[7] Thales,undefined
[8] Univ. Paris-Sud,undefined
[9] University of Paris-Saclay,undefined
来源
Nature Electronics | 2018年 / 1卷
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摘要
Magnetization switching in magnetic tunnel junctions using spin-transfer torque and spin–orbit torque is key to the development of future spintronic memories. However, both switching mechanisms suffer from intrinsic limitations. In particular, the switching current in spin-transfer torque devices needs to be lowered, whereas an external magnetic field is required for spin–orbit torque devices to achieve deterministic switching in perpendicular magnetic tunnel junctions. Here, we experimentally demonstrate field-free switching of three-terminal perpendicular-anisotropy magnetic tunnel junction devices through the interaction between spin–orbit and spin-transfer torques. We show that the threshold current density of spin–orbit torque switching can be reduced by increasing the spin-transfer torque current density, and thus an optimal point for low-power perpendicular magnetic tunnel junction switching can be found by tuning the two current densities. Furthermore, and due to this interplay, low-power switching in two-terminal perpendicular magnetic tunnel junctions without an external magnetic field is also achieved.
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页码:582 / 588
页数:6
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