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Tilted Perpendicular Anisotropy-Induced Spin-Orbit Ratchet Effects

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【作者】 陈彬龙垣图聂宇林凌姿瑀马天平张瑞轩吴义政骆泳铭王宁宁

【Author】 Bin Chen;Yuantu Long;Yulin Nie;Ziyu Ling;Tianping Ma;Ruixuan Zhang;Yizheng Wu;Yongming Luo;Ningning Wang;School of Electronics and Information Engineering, Hangzhou Dianzi University;Anhui Key Laboratory of Magnetic Functional Materials and Devices, School of Materials Science and Engineering,Anhui University;Research Center for Intelligent Computing Platforms,Zhejiang Laboratory;State Key Laboratory of Surface Physics and Department of Physics, Fudan University;Wenzhou Institute of Hangzhou Dianzi University;

【通讯作者】 骆泳铭;王宁宁;

【机构】 School of Electronics and Information Engineering, Hangzhou Dianzi UniversityAnhui Key Laboratory of Magnetic Functional Materials and Devices, School of Materials Science and Engineering,Anhui UniversityResearch Center for Intelligent Computing Platforms,Zhejiang LaboratoryState Key Laboratory of Surface Physics and Department of Physics, Fudan UniversityWenzhou Institute of Hangzhou Dianzi University

【摘要】 <正>Using micromagnetic simulations, we demonstrate the tilted perpendicular anisotropy-induced spin-orbit ratchet effect. In spin-orbit torque(SOT)-induced magnetization switching, the critical currents required to switch between the two magnetization states(upward and downward magnetization) are asymmetric. In addition, in the nanowire structure, tilted anisotropy induces formation of tilted domain walls(DWs). The tilted DWs exhibit a ratchet behavior during motion. The ratchet effect during switching and DW motions can be tuned by changing the current direction with respect to the tilting direction of anisotropy. The ratchet motion of the DWs can be used to mimic the leaky-integrate-fire function of a biological neuron, especially the asymmetric property of the “potential” and “reset” processes. Our results provide a full understanding of the influence of tilted perpendicular anisotropy on SOT-induced magnetization switching and DW motion, and are beneficial for designs of further SOT-based devices.

【关键词】 magnetizationanisotropyswitchingasymmetrictorquecurrentsperpendicularorbitswitchmimic
【基金】 supported by the National Natural Science Foundation of China (Grant No. 12274108);the Natural Science Foundation of Zhejiang Province (Grant Nos. LY23A040008 and LY23A040008);the Basic Scientific Research Project of Wenzhou (Grant No. G20220025)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2024年07期
  • 【分类号】O469
  • 【下载频次】1
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