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Electrodynamic theory of ferromagnetic resonance and its applications in precise measurements of ferromagnetic linewidth, permeability tensor and saturation magnetization

机译:铁磁共振电动力学理论及其在精确测量铁磁线宽,渗透性张量和饱和磁化的精确测量中的应用

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This review paper describes the state of the art in measurements of ferromagnetic linewidth, permeability tensor and saturation magnetization employing electrodynamic theory of ferromagnetic resonance. It is shown that the electrodynamic theory allows significant improvements of measurement accuracy of these parameters with respect to the commonly used perturbation and magnetostatics theories. Contrary to the perturbation method the electrodynamic theory is not limited to small samples. It allows determination of the resonance frequencies and Q -factors for arbitrary size spherical and cylindrical gyromagnetic samples in suitably chosen metal enclosures. Results obtained with the electrodynamic theory for very small samples are identical to those obtained with perturbation and magnetostatics theories. Results of measurements of the ferromagnetic linewidth, permeability tensor and saturation magnetization at microwave frequencies are presented.
机译:本文介绍了在采用铁磁共振电动力学理论的铁磁线宽,渗透性张力和饱和磁化的测量中的技术领域。结果表明,电动力学理论允许在常用的扰动和磁静音理论方面显着改善这些参数的测量精度。与扰动方法相反,电动力学理论不限于小样本。 It allows determination of the resonance frequencies and Q -factors for arbitrary size spherical and cylindrical gyromagnetic samples in suitably chosen metal enclosures.通过电动理论获得非常小的样品的结果与用扰动和磁静音理论获得的结果相同。介绍了微波频率下铁磁线宽,渗透性张量和饱和磁化的测量结果。

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