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High performance distributed Bragg reflector microwave resonator

机译:高性能分布式布拉格反射器微波谐振器

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A new resonator device structure is described that achieves Q-factors well above those currently realizable. The new structure consists of a microwave cavity, for which the enclosure walls consist of Distributed Bragg Reflectors (DBR) made of low-loss sapphire. For this configuration, most of the resonant field resides in empty space, with small field strengths in the thin layers of sapphire which comprise the DBR structure. The physical structure takes the form of interpenetrating concentric rings and plates of low-loss sapphire contained in a cylindrical metal enclosure. The theoretical analysis of the DBR resonant structure allows the positions and dimensions of the component rings and plates to be precisely determined for a specified resonant frequency. The resonator Q can be accurately calculated, and plots of the resonant fields clearly show the physical mechanism leading to the observed efficiency of this resonator structure. Experimental results are given for resonators designed at 9.0 and 13.2 GHz. The measured unloaded Q's at room temperature are over 650,000 and 450,000 respectively.
机译:描述了一种新的谐振器器件结构,该结构实现了远高于目前可实现的Q因子的Q因子。新结构包括一个微波腔,其外壳壁由低损耗蓝宝石制成的分布式布拉格反射镜(DBR)组成。对于这种配置,大多数共振场位于空的空间中,而在构成DBR结构的蓝宝石薄层中具有较小的场强。物理结构采用互穿的同心环和圆柱形金属外壳中包含的低损耗蓝宝石板的形式。通过对DBR谐振结构的理论分析,可以针对指定的谐振频率精确确定组件环和板的位置和尺寸。可以精确地计算出谐振器Q,并且谐振场的曲线清楚地示出了导致观察到的该谐振器结构效率的物理机制。给出了针对9.0和13.2 GHz设计的谐振器的实验结果。在室温下测得的空载Q分别超过650,000和450,000。

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