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Quasi-optical dielectric resonators with small cuvette and capillary filled with ethanol-water mixtures

机译:带有小比色皿和毛细管的准光介质谐振器,毛细管中充满乙醇-水混合物

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Electrodynamic properties of quasi-optical dielectric resonators (QDRs) of two types with liquid-filled small cavities have been studied. Both eigen frequency and energy loss in the resonators depending on dimensions of the cavities are presented. One of the QDR types is a two-hemidisc resonator with a diametrical slot in which a cuvette with a thin (0.01-0.1mm) flat liquid layer is placed and the other is a disc resonator with a small diameter (0.3-2mm) cylindrical capillary. Measurements have been carried out at room temperature in K-a-waveband by using the resonators made of Teflon material. The obtained results allow to conclude that the given approaches to the development of measuring technique for characterization of liquids in small and with arbitrary loss tangent (for example, water and aqueous solutions) are quite perspective. Advantages and disadvantages of each resonator are considered briefly. The necessity to carry out both theoretical description of the electrodynamic properties of the QDR containing small liquid-filled cavities and determination of maximal sensitivity conditions for the measurement techniques is underlined.
机译:研究了两种充满液体的小腔的准光介电共振器(QDR)的电动力学特性。谐振腔的本征频率和能量损耗都取决于空腔的尺寸。 QDR类型之一是带有两个半直径槽的两半谐振器,其中放置了具有薄(0.01-0.1mm)平坦液体层的比色杯,另一种是具有小直径(0.3-2mm)圆柱形的盘形谐振器毛细管。通过使用特氟龙材料制成的谐振器,已在室温下在K-a波段进行了测量。获得的结果可以得出结论,给定的方法来发展用于表征小且具有任意损耗正切(例如水和水溶液)的液体的测量技术是相当有前景的。简要考虑每个谐振器的优缺点。强调了对包含小液体填充腔的QDR的电动力学特性进行理论描述以及确定测量技术的最大灵敏度条件的必要性。

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