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Enhanced spin–orbit torque efficiency in Pt100−xNix alloy based magnetic bilayer
引用本文:何聪丽,陈庆强,申世鹏,魏晋武,许洪军,赵云驰,于国强,王守国.Enhanced spin–orbit torque efficiency in Pt100−xNix alloy based magnetic bilayer[J].中国物理 B,2021(3).
作者姓名:何聪丽  陈庆强  申世鹏  魏晋武  许洪军  赵云驰  于国强  王守国
作者单位:Institute of Advanced Materials;Beijing National Laboratory for Condensed Matter Physics
基金项目:Project supported by the National Natural Science Foundation of China(Grant Nos.51901025 and 51625101);the Fundamental Research Funds for the CentralUniversities,China(Grant No.310421101);the Beijing Natural Science Foundation,China(Grant No.Z190007).
摘    要:The binary alloy/ferromagnetic metal heterostructure has drawn extensive attention in the research field of spin–orbittorque(SOT)due to the potential enhancement of SOT efficiency via composition engineering.In this work,the magneticproperties and SOT efficiency in the Pt100?xNix/Ni78Fe22 bilayers were investigated via the spin-torque ferromagneticresonance(ST-FMR)technique.The effective magnetic anisotropy field and effective damping constant extracted by analyzing the ST-FMR spectra show a weak dependence on the Ni concentration.The effective spin-mixing conductanceof 8.40×1014??1·m?2and the interfacial spin transparency Tin of 0.59 were obtained for the sample of Pt70Ni30/NiFebilayer.More interestingly,the SOT efficiency that is carefully extracted from the angular dependence of ST-FMR spectrashows a nonmonotonic dependence on the Ni concentration,which reaches the maximum at x=18.The enhancement ofthe SOT efficiency by alloying the Ni with Pt shows potential in lowering the critical switching current.Moreover,alloyingrelatively cheaper Ni with Pt may promote to reduce the cost of SOT devices.

关 键 词:spin-orbit  torque  magnetic  doping  spin-torque  ferromagnetic  resonance
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