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Rigorous analysis of highly tunable cylindrical transverse magnetic mode re-entrant cavities

机译:高度可调的圆柱形横向磁模式重入腔的严格分析

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摘要

Cylindrical re-entrant cavities are unique three-dimensional structures that resonate with their electric and magnetic fields in separate parts of the cavity. To further understand these devices, we undertake rigorous analysis of the properties of the resonance using “in-house” developed Finite Element Method (FEM) software capable of dealing with small gap structures of extreme aspect ratio. Comparisons between the FEM method and experiments are consistent and we illustrate where predictions using established lumped element models work well and where they are limited. With the aid of the modeling we design a highly tunable cavity that can be tuned from 2 GHz to 22 GHz just by inserting a post into a fixed dimensioned cylindrical cavity. We show this is possible, as the mode structure transforms from a re-entrant mode during the tuning process to a standard cylindrical transverse magnetic mode.
机译:圆柱凹腔是独特的三维结构,它们在腔体的各个部分中与电场和磁场产生共振。为了进一步了解这些设备,我们使用“内部”开发的有限元方法(FEM)软件对共振特性进行了严格的分析,该软件能够处理极高纵横比的小间隙结构。有限元方法与实验之间的比较是一致的,并且我们说明了使用建立的集总元素模型的预测在哪些地方效果很好,哪些地方受到限制。借助建模,我们设计了高度可调的腔,只需将柱子插入固定尺寸的圆柱腔中,即可将其从2 GHz调谐到22 GHz。我们证明了这是可能的,因为模式结构从调谐过程中的重入模式转换为标准的圆柱形横向磁模式。

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