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Analysis of Switchable Spin Torque Oscillator for Microwave Assisted Magnetic Recording

机译:微波辅助磁记录的可切换自旋转矩振荡器的分析

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A switchable spin torque oscillator (STO) with a negative magnetic anisotropy oscillation layer for microwave assisted magnetic recording is analyzed theoretically and numerically. The equations for finding the STO frequency and oscillation angle are derived from Landau-Lifshitz-Gilbert (LLG) equation with the spin torque term in spherical coordinates. The theoretical analysis shows that the STO oscillating frequency remains the same and oscillation direction reverses after the switching of the magnetization of the spin polarization layer under applied alternative magnetic field. Numerical analysis based on the derived equations shows that the oscillation angle increases with the increase of the negative anisotropy energy density (absolute value) but decreases with the increase of spin current, the polarization of conduction electrons, the saturation magnetization, and the total applied magnetic field in thezdirection. The STO frequency increases with the increase of spin current, the polarization of conduction electrons, and the negative anisotropy energy density (absolute value) but decreases with the increase of the saturation magnetization and the total applied magnetic field in thezdirection.
机译:从理论上和数值上分析了具有负磁各向异性振荡层的微波辅助磁记录可控自旋转矩振荡器(STO)。用于查找STO频率和振荡角的方程式是从Landau-Lifshitz-Gilbert(LLG)方程导出的,该方程式中的旋转转矩项位于球坐标系中。理论分析表明,在施加交变磁场的作用下,自旋极化层的磁化强度发生切换后,STO的振荡频率保持不变,振荡方向反向。基于推导方程的数值分析表明,振荡角随负各向异性能量密度(绝对值)的增加而增加,但随自旋电流,导电电子的极化,饱和磁化强度和施加的总磁通量的增加而减小。方向上的字段。 STO频率随自旋电流,导电电子的极化和负各向异性能量密度(绝对值)的增加而增加,但随着饱和磁化强度和z方向上施加的总磁场的增加而降低。

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