Spin-orbit torque in Pt/CoNiCo/Pt symmetric devices

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作者
Meiyin Yang
Kaiming Cai
Hailang Ju
Kevin William Edmonds
Guang Yang
Shuai Liu
Baohe Li
Bao Zhang
Yu Sheng
Shouguo Wang
Yang Ji
Kaiyou Wang
机构
[1] SKLSM,Department of Physics
[2] Institute of Semiconductors,Department of Materials Physics and Chemistry
[3] School of Sciences,undefined
[4] Beijing Technology and Business University,undefined
[5] School of Physics and Astronomy,undefined
[6] University of Nottingham,undefined
[7] University of Science and Technology,undefined
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Current induced magnetization switching by spin-orbit torques offers an energy-efficient means of writing information in heavy metal/ferromagnet (FM) multilayer systems. The relative contributions of field-like torques and damping-like torques to the magnetization switching induced by the electrical current are still under debate. Here, we describe a device based on a symmetric Pt/FM/Pt structure, in which we demonstrate a strong damping-like torque from the spin Hall effect and unmeasurable field-like torque from Rashba effect. The spin-orbit effective fields due to the spin Hall effect were investigated quantitatively and were found to be consistent with the switching effective fields after accounting for the switching current reduction due to thermal fluctuations from the current pulse. A non-linear dependence of deterministic switching of average Mz on the in-plane magnetic field was revealed, which could be explained and understood by micromagnetic simulation.
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