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Duffing oscillation-induced reversal of magnetic vortex core by a resonant perpendicular magnetic field

机译:Duffing共振垂直磁场引起的磁涡旋铁心的振荡逆转

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摘要

Nonlinear dynamics of the magnetic vortex state in a circular nanodisk was studied under a perpendicular alternating magnetic field that excites the radial modes of the magnetic resonance. Here, we show that as the oscillating frequency is swept down from a frequency higher than the eigenfrequency, the amplitude of the radial mode is almost doubled to the amplitude at the fixed resonance frequency. This amplitude has a hysteresis vs. frequency sweeping direction. Our result showed that this phenomenon was due to a Duffing-type nonlinear resonance. Consequently, the amplitude enhancement reduced the vortex core-switching magnetic field to well below 10 mT. A theoretical model corresponding to the Duffing oscillator was developed from the Landau–Lifshitz–Gilbert equation to explore the physical origin of the simulation result. This work provides a new pathway for the switching of the magnetic vortex core polarity in future magnetic storage devices.
机译:在激发磁场的径向模式的垂直交变磁场下,研究了圆形纳米盘中磁涡旋状态的非线性动力学。在这里,我们表明,随着振荡频率从高于本征频率的频率向下扫频,径向模式的振幅几乎翻了一番,达到固定共振频率的振幅。该幅度具有磁滞与频率扫描方向的关系。我们的结果表明,这种现象是由于Duffing型非线性共振引起的。因此,振幅增强将涡旋核心转换磁场降低到10 wellmT以下。从Landau–Lifshitz–Gilbert方程建立了与Duffing振荡器相对应的理论模型,以探索仿真结果的物理来源。这项工作为未来的磁存储设备中的磁涡流芯极性的转换提供了新的途径。

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