Rapid and accurate interferometric measurements of the complex permittivity of medium loss liquids at millimeter and centimeter wavelengths

J. Goulon, J. Sarteaux, J. Brondeau, M. Hollecker
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Abstract

Dielectric relaxation has proved itself a useful tool for studying molecular motions or very fast chemical kinetics in the liquid phase.1 For a large number of experiments it is essential to carefully investigate the frequency region 3–300 GHz where radio techniques merge with optical techniques. The aim of our paper is to show that a broad band Michelson interferometer, featuring oversized rectangular waveguide (RG49/U) is suitable for rapid but accurate complex permittivity measurements over the whole 15–300 GHz frequency range. Some complementary data can be obtained in the X-band (7–12 GHz) from a similar but standard waveguide (RG52/U) arrangement using a magic tee as beam divider. Typical interferograms as well as Cole-Cole plots of some liquids will be reproduced. Also encouraging is the coherence of our results with far ir data.
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毫米和厘米波长介质损耗液体复介电常数的快速和精确干涉测量
介电弛豫已被证明是研究分子运动或液相快速化学动力学的有用工具对于大量的实验来说,仔细研究无线电技术与光学技术融合的3-300 GHz频率区域是必要的。本文的目的是证明具有超大矩形波导(RG49/U)的宽带迈克尔逊干涉仪适用于整个15-300 GHz频率范围内快速而准确的复杂介电常数测量。在x波段(7 - 12ghz),一些互补的数据可以从一个类似的但标准的波导(RG52/U)安排中获得,使用一个神奇的三通作为分束器。将再现一些液体的典型干涉图和Cole-Cole图。同样令人鼓舞的是,我们的结果与远红外数据的一致性。
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Session E: Solid breakdown Rapid and accurate interferometric measurements of the complex permittivity of medium loss liquids at millimeter and centimeter wavelengths Study of current peaks in Teflon due to thermal gradient Dielectric breakdown of solids and liquids at optical frequencies The calorimetric measurement of low temperature dielectric loss
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