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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Mechanism of vortex switching in magnetic nanodots under a circular magnetic field - II: dynamics of a spin plaquette containing a vortex
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Mechanism of vortex switching in magnetic nanodots under a circular magnetic field - II: dynamics of a spin plaquette containing a vortex

机译:圆形磁场作用下磁性纳米点中涡旋转换的机理-II:含涡旋的自旋球的动力学

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摘要

For a theoretical explanation of the mechanism of switching of the polarization of magnetic vortices in an external circular magnetic field, a small spin plaquette in a vortex configuration is considered. An analytical investigation of the initial (linear) stage of the vortex switching process is carried out. The analytical results obtained confirm the data of a numerical calculation of the plaquette dynamics. Both the numerical simulation and an analytical treatment of the initial stage of activation show the importance of taking the azimuthal modes of the system into account. It is at the frequencies of these modes that the most rapid growth of the vortex energy and the total intraplane projection of the magnetization occur. Increasing the amplitude of these modes leads to parametric excitation of a low-frequency symmetric mode, and that causes vortex switching. The results provide a qualitative explanation of the data of a numerical simulation of vortex switching in large magnetic systems and can be used in experiments on the directed influencing of the polarization of vortices in magnetic nanodots.
机译:为了对外部圆形磁场中的磁涡流的极化切换的机理进行理论解释,我们考虑了涡流构型中的小自旋球拍。对涡旋转换过程的初始(线性)阶段进行了分析研究。获得的分析结果证实了球团动力学的数值计算数据。数值模拟和激活初始阶段的解析处理都显示了考虑系统方位角模式的重要性。正是在这些模式的频率下,涡旋能量的最快速增长和磁化的整个平面内投影发生了。这些模式的幅度增加会导致低频对称模式的参数激励,并导致涡旋切换。该结果为大型磁性系统中涡旋转换数值模拟的数据提供了定性解释,可用于磁纳米点中涡旋极化的定向影响实验。

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