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Two-layered disc quasi-optical dielectric resonators: electrodynamics and application perspectives for complex permittivity measurements of lossy liquids

机译:两层盘式准光介质谐振器:有损耗液体的复介电常数测量的电动力学和应用前景

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摘要

Electromagnetic properties of novel quasi-optical resonators are studied theoretically and experimentally. The resonators are a radially two-layered dielectric disc sandwiched between conducting endplates. The internal layer can be filled with air or lossy liquid. Whispering gallery modes are excited in such a resonator and the mode energy is concentrated near the inner side of the cylindrical surface of an external layer. The measurement data obtained in the K-a-band are compared with theoretical calculations of eigenfrequencies and quality factors of the Teflon resonator filled with water, ethyl alcohol, benzene and aqueous solutions of ethyl alcohol. A number of 'anomalous' properties of the resonator can be described using Maxwell equations. The experimental data on the complex permittivity of a binary mixture water - ethyl alcohol are compared with the values calculated in terms of Debye's function. An important feature of the proposed technique is that it holds promise for making first principle microwave measurements of the permittivity of lossy liquids.
机译:从理论和实验上研究了新型准光谐振器的电磁特性。谐振器是夹在导电端板之间的径向两层介质盘。内层可以充满空气或有损耗的液体。在这种谐振器中激发出回音壁模式,并且模式能量集中在外层圆柱表面的内侧附近。将在K-a波段中获得的测量数据与充有水,乙醇,苯和乙醇水溶液的特氟龙谐振器的本征频率和品质因数的理论计算进行比较。谐振器的许多“异常”特性可以使用麦克斯韦方程来描述。将关于二元混合物水-乙醇的复介电常数的实验数据与根据德拜函数计算的值进行了比较。所提出的技术的一个重要特征是,它有望对损耗液体的介电常数进行第一原理微波测量。

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