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A Circular Patch Resonator for the Measurement of Microwave Permittivity of Nematic Liquid Crystal

机译:圆片谐振器,用于测量向列液晶的微波介电常数

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摘要

This paper presents a method of performing microwave characterizations of nematic liquid crystals using a circular patch resonator and finite-element software. This technique, which is based on inferring material properties from measured resonances, was demonstrated with BL006 (a nematic liquid-crystal mixture) over the frequency range of 4.8–8.7 GHz. The resonator comprises a thin liquid-crystal sample between a ground plane and a directly coupled inverted patch. The coupling-line design minimizes resonator loading and reflections from substrate impedance discontinuities, and the liquid crystal is aligned with rubbed surfaces and low-frequency voltages. The permittivity is found with simulations that iteratively narrow the difference between the measured and computed resonances. The computed values for BL006 agree well with those found in the literature. This method benefits from simple resonator construction, straightforward simulations, and accuracy that derives from the finite element's detailed modeling of coupling and geometry of the fabricated device.
机译:本文提出了一种使用圆形贴片谐振器和有限元软件对向列液晶进行微波表征的方法。该技术基于从测得的共振中推断出的材料特性,并已在BL006(向列型液晶混合物)的4.8–8.7 GHz频率范围内得到了证明。该谐振器包括在接地层和直接耦合的反向贴片之间的薄液晶样本。耦合线设计最大程度地减少了谐振器负载和基板阻抗不连续性造成的反射,并且液晶与摩擦表面和低频电压对齐。通过仿真可以发现介电常数,该仿真可以迭代地缩小测量和计算的共振之间的差异。 BL006的计算值与文献中的值非常吻合。这种方法得益于简单的谐振器结构,简单明了的仿真以及从有限元对所制造器件的耦合和几何形状进行详细建模而得出的精度。

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