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Electromagnetic Characterization of Shielded Spherical Gyromagnetic Resonators

机译:屏蔽球形旋磁谐振器的电磁特性

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摘要

The electromagnetic (EM) properties of shielded gyromagnetic spheres are characterized with the aid of an electrodynamic model formulated for the transverse electric (TE) modes of an isotropic sphere, in a similar way as dielectric resonators are commonly analyzed. Broadband characteristics of geometric and energy filling factors are presented. A new measure of the magnetic loss tangent is introduced which is positive despite the intrinsic permeability of the gyromagnetic medium being negative, where existing definitions yield a non-physical negative value. The sample size dependence of those quantities is also assessed. The conclusions from the analysis are applied to investigate and de-embed ferromagnetic linewidth errors which can occur in broadband measurements of magnetic garnet spheres. Magnetic anisotropy fields and the gyromagnetic g-factor are also estimated from the measurement data. Experiments were performed in a two-port subwavelength cavity, covering a frequency range of up to 28 GHz. Additionally, two-port rectangular resonant cavity linewidth measurements at a few modes have been conducted. Good agreement between the two methods is found if the systematic error is accounted for.
机译:屏蔽旋磁球的电磁 (EM) 特性借助于为各向同性球的横向电 (TE) 模式制定的电动力学模型进行表征,其方式与通常分析的介电谐振器类似。给出了几何和能量填充因子的宽带特性。引入了一种新的磁损耗角正切度量,尽管旋磁介质的固有磁导率为负,但该测量值为正,其中现有定义产生非物理负值。还评估了这些数量的样本量依赖性。分析结论被应用于研究和反嵌入磁性石榴石球体宽带测量中可能发生的铁磁线宽误差。磁各向异性场和旋磁g因子也是根据测量数据估算的。实验在双端口亚波长腔中进行,覆盖高达28 GHz的频率范围,此外,还进行了几种模式下的双端口矩形谐振腔线宽测量。如果考虑系统误差,则发现两种方法之间有很好的一致性。

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