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Characterization of Hydrogen-Bonded Liquid Crystal Materials in the Millimeter-Wave Region

机译:毫米波区氢键液晶材料的表征

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A novel liquid crystal (LC) materials consisting of hydrogen bonding are investigated in the millimeter-wave (MMW) frequency region of electromagnetic wave spectra. Relative permittivity (or refractive index) and loss tangent (or absorption coefficient) are evaluated using a rectangular waveguide test cell and are compared with those values of conventional LC materials. The most unusual result is that the refractive index anisotropy increases significantly in the MMW region comparing with that for visible light, which is contrary to what is observed in the conventional LC materials. Although the anisotropy, which determines the tunability of LC devices, is not so large in this stage, the loss tangent is as small as, or better than, those of the excellent conventional-type LC materials synthesized for the microwave applications. We find out a potential of the hydrogen-bonded LCs as one of the best classes of LC materials for MMW application.
机译:在电磁波谱的毫米波(MMW)频率区域中研究了由氢键组成的新型液晶(LC)材料。 使用矩形波导测试单元评估相对介电常数(或折射率)和损耗切线(或吸收系数),并与传统LC材料的那些值进行比较。 最不寻常的结果是,与可见光相比,MMW区域中的折射率各向异性显着增加,这与传统LC材料中观察到的逆相反。 尽管确定LC器件的可调性的各向异性在该阶段不是那么大,但是损耗正切形如对于微波应用合成的优异的传统型LC材料的损耗正切。 我们发现氢键合金LCS的潜力是MMW应用的最佳LC材料的潜力。

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