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Nonlinear Magnetoimpedance in Field- and Stress-Annealed Amorphous Ribbons

机译:场和应力退火非晶带中的非线性磁阻

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摘要

The diagonal and off-diagonal nonlinear magnetoimpedance in amorphous ribbons with well defined magnetic anisotropy is investigated. Field- and stress-annealing are used to produce easy-ribbon-axis and hard-ribbon-axis anisotropy, respectively. The dependence of the first three harmonic components of impedance on applied magnetic field and dc bias current is discussed. The symmetry properties of diagonal and off-diagonal impedance components as functions of applied magnetic field and dc bias current are substantially different. While all the components of diagonal impedance are mainly symmetric functions of field, the off-diagonal impedance is mainly antisymmetric. It is found that the odd harmonics of diagonal impedance can be related to the second harmonic of the off-diagonal impedance and vice versa. A theoretical explanation of the observed behavior, based on the symmetry properties of nonlinear Landau–Lifshitz–Gilbert equation, is proposed.
机译:研究了具有明确定义的磁各向异性的非晶带中的对角和非对角非线性磁阻。场退火和应力退火分别用于产生易带轴各向异性和硬带轴各向异性。讨论了阻抗的前三个谐波分量对施加的磁场和直流偏置电流的依赖性。对角和非对角线阻抗分量的对称特性随所施加的磁场和直流偏置电流而变化。虽然对角阻抗的所有分量主要是场的对称函数,但非对角阻抗则主要是反对称的。发现对角阻抗的奇次谐波可能与非对角阻抗的二次谐波有关,反之亦然。提出了基于非线性Landau–Lifshitz–Gilbert方程的对称性质的观测行为的理论解释。

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