Optimization of resonator for local quasi-optical SHF and EHF diagnostics of inhomogenious materials anisotropy

A. V. Badin, G. Dunaevskii
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引用次数: 1

Abstract

The present paper concerns the possibility of studying of weak anisotropic media, which is based on the use of open microwave resonator with a measuring hole in one of the mirrors. This approach is allowed providing the locality of observations, the high sensitivity to small variations of the reflected signal, the opportunity to explore the materials with high absorption. The use of quasi-optical resonator does not practically limit the frequency field of studies. The model of the open resonator with an inhomogeneous radius mirror, being used to describe the sensitivity of this method, is quantitatively allowed estimating the influence of geometric factors of the resonator and optimizing them for different requirements on local measurements, for the reflectivity of the objects under study, for frequency sensing.
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非均匀材料各向异性局部准光学强场和EHF诊断谐振腔的优化
本文讨论了利用在一个反射镜上开有测量孔的开放式微波谐振腔来研究弱各向异性介质的可能性。这种方法提供了观测的局域性,对反射信号的小变化的高灵敏度,以及探索高吸收率材料的机会。准光谐振器的使用实际上并不限制研究的频率场。采用非均匀半径反射镜的开式谐振器模型来描述该方法的灵敏度,可以定量地估计谐振器几何因素的影响,并根据局部测量、被研究对象的反射率和频率传感的不同要求对其进行优化。
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