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Imaging Magnetization Switching Induced by Spin-Orbit Torque in Perpendicularly Magnetized Ta/CoFeB Structure

机译:通过旋转轨道扭矩在垂直磁化的TA / CoFeB结构中引起的成像磁化切换

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We report the study of current-induced magnetization switching in the Ta/CoFeB heterostructures by simultaneous magneto-electrical transport and magneto-optical Kerr effect (MOKE) microscopy measurements. Although the anomalous Hall hysteresis loop summarizes the general switching behaviors, the supplementary MOKE data can provide spatial and temporal information to visualize the magnetic domain evolution as functions of the applied current and the in-plane magnetic field. More importantly, when the initial magnetic field is not sufficient enough, the interfacial Dzyaloshinskii & x2013;Moriya interaction (DMI) would modulate the spin-orbit torque (SOT) current switching dynamics and lead to the formation of the intermediate Hall resistance plateau with meta-stable tilted domain texture. Our work elucidates the importance of the applied in-plane field and unveils an effective approach to investigate the SOT/DMI-related phenomena in symmetry-breaking magnetic heterostructures.
机译:我们通过同时磁铁传输和磁光克尔效应(MOKE)显微镜测量来报告TA / COFEB异质结构中电流诱导磁化切换的研究。尽管异常霍尔滞后回路总结了一般切换行为,但补充击球数据可以提供空间和时间信息,以便以施加电流和面内磁场的功能可视化磁畴演变。更重要的是,当初始磁场不够足够时,界面dzyaloshinskii&x2013;森图相互作用(DMI)将调制旋转轨道扭矩(SOT)电流切换动力学,并导致中间霍尔抵抗高原的形成-stable倾斜的域纹理。我们的作品阐明了所施加的面内场的重要性,并推出一种有效的方法来研究对称性磁性异质结构中的SOT / DMI相关现象。

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