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Potential applications of nematic liquid crystal materials in the millimeter wave region

机译:毫米波区向型液晶材料的潜在应用

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Large tunable properties induced by the change of LC molecular orientation states can be expected for wider frequency region except for visible rays. Focusing on the millimeter wave (MMW) region, a novel measurement method for LC materials is investigated using the rectangular waveguide test cell and several commercially available nematic LC materials have been actually evaluated for V-band (50GHz-75GHz) and W-band (65GHz-110GHz) regions. Refractive indices for the direction parallel to the LC molecular orientation in the MMW region are almost the same with those in the visible rays, on the other hand the indices for the direction perpendicular to the LC orientation show a little larger values. Consequently, refractive index anisotropy which is the most important for the tunable LC devices reduces to be 1/2 through 1/3 of that in the visible rays. Although the larger refractive index anisotropy is desired for the better performance, the anisotropy of the usual LC materials is still large and the loss properties are fairly good. Based on the materials data, we have demonstrated the CPW type LC devices combining with an ITO glass substrate on it. Phase and amplitude changes of the transmitted MMW by the LC driving are investigated considering the influences of some device parameters.
机译:除了可见光之外,可以预期由LC分子取向状态的变化引起的大型可调谐特性。专注于毫米波(MMW)区域,采用矩形波导试验电池研究了一种新的LC材料的测量方法,并且实际上已经对V波段(50GHz-75GHz)和W波段( 65GHz-110GHz)地区。与MMW区域中的LC分子取向平行的方向的折射率与可见光线中的那些相同,另一方面,垂直于LC取向的方向的指标显示出稍大的值。因此,对可调谐LC设备最重要的折射率各向异性降低至可见光中的1/2至1/3。尽管需要较大的折射率各向异性,但常用的LC材料的各向异性仍然很大,损失特性相当不错。基于材料数据,我们已经证明了与ITO玻璃基板相结合的CPW型LC器件。考虑到一些设备参数的影响,研究了LC驱动的发送MMW的相位和幅度变化。

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