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首页> 外文期刊>Journal of Communications Technology and Electronics >Forced Nonlinear Precession of the Magnetization Vector under the Conditions of an Orientation Transition
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Forced Nonlinear Precession of the Magnetization Vector under the Conditions of an Orientation Transition

机译:方向转变条件下磁化矢量的强迫非线性进动

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摘要

Forced nonlinear precession of the magnetization vector in a normally magnetized magnetic plate under the conditions of an orientation transition is considered. It is shown that, in the field lower than the form demagnetization field, the variable circularly polarized field causes precession of the equilibrium position of the magnetization vector. It is demonstrated based on a vector model in which the precession period of the equilibrium position is inversely proportional to the squared amplitude of the variable field and the sine of the angle of deviation of the equilibrium position of magnetization from the constant field. It is shown that the critical parameters necessary for excitation of precession of the equilibrium position are the amplitude and frequency of the variable field. Diagrams determining domains of existence of precession of the equilibrium position for different saturation magnetization of a magnetic plate are constructed in terms of the coordinates variable field amplitude-frequency. The role of dissipation of magnetization oscillations in the determination of the critical parameters is elucidated. The features of precession in the presence of asymmetric excitation and in the presence of anisotropy in the plane of the plate are noted.
机译:考虑了在取向转变的条件下在正常磁化的磁性板上的磁化矢量的强制非线性进动。结果表明,在低于形式退磁磁场的磁场中,可变圆极化磁场会引起磁化矢量的平衡位置的进动。它是基于矢量模型进行演示的,其中平衡位置的进动周期与可变磁场的平方振幅和磁化平衡位置偏离恒定磁场的角度的正弦成反比。结果表明,激发平衡位置进动所必需的关键参数是可变磁场的振幅和频率。根据坐标可变场振幅-频率,构造了确定针对磁性板的不同饱和磁化强度的平衡位置的进动存在域的图。阐明了磁化振荡耗散在确定关键参数中的作用。记录了在板平面中存在不对称激发和各向异性的情况下进动的特征。

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