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Current-driven second-harmonic domain wall resonance in ferromagnetic metalonmagnetic metal bilayers: A field-free method for spin Hall angle measurements

机译:铁磁性金属/非磁性金属双层中电流驱动的二次谐波畴壁共振:自旋霍尔角测量的无场方法

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摘要

We study the ac current-driven domain wall motion in bilayer ferromagnetic metal (FM)onmagnetic metal (NM) nanowires. The solution of the modified Landau-Lifshitz-Gilbert equation including all the spin transfer torques is used to describe motion of the domain wall in the presence of the spin Hall effect. We show that the domain wall center has a second-harmonic frequency response in addition to the known first-harmonic excitation. In contrast to the experimentally observed second-harmonic response in harmonic Hall measurements of spin-orbit torque in magnetic thin films, this second-harmonic response direcdy originates from spin-orbit torque driven domain wall dynamics. Based on the spin current generated by domain wall dynamics, the longitudinal spin motive force generated voltage across the length of the nanowire is determined. The second-harmonic response introduces additionally a practical field-free and all-electrical method to probe the effective spin Hall angle for FM/NM bilayer structures that could be applied in experiments. Our results also demonstrate the capability of utilizing FM/NM bilayer structures in domain wall based spin-torque signal generators and resonators.
机译:我们研究了双层铁磁金属(FM)/非磁金属(NM)纳米线中交流电流驱动的畴壁运动。包含所有自旋传递转矩的修改后的Landau-Lifshitz-Gilbert方程的解用于描述在存在自旋霍尔效应的情况下畴壁的运动。我们表明,畴壁中心除了已知的一次谐波激励外,还具有二次谐波频率响应。与在磁性薄膜中自旋轨道转矩的谐波霍尔测量中通过实验观察到的二次谐波响应相反,该二次谐波响应方向源自自旋轨道转矩驱动的畴壁动力学。基于畴壁动力学产生的自旋电流,确定了纳米线长度上纵向自旋动力产生的电压。次谐波响应还引入了一种实用的无场全电方法,以探测可用于实验的FM / NM双层结构的有效自旋霍尔角。我们的结果还证明了在基于畴壁的自旋扭矩信号发生器和谐振器中利用FM / NM双层结构的能力。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第14期|144406.1-144406.6|共6页
  • 作者单位

    Department of Physics, University of Kashan, 87317 Kashan, Iran;

    Faculty of Physics, Shahid Beheshti University, Evin, 19839 Tehran, Iran;

    Department of Physics, University of Kashan, 87317 Kashan, Iran;

    Faculty of Physics, Shahid Beheshti University, Evin, 19839 Tehran, Iran;

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