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太赫兹频率范围内液晶的分子特性。

Molecular properties of liquid crystals in the terahertz frequency range.

作者信息

Vieweg Nico, Jansen Christian, Shakfa Mohammad Khaled, Scheller Maik, Krumbholz Norman, Wilk Rafal, Mikulics Martin, Koch Martin

机构信息

Institute for High-Frequency Technology, University of Braunschweig, Braunschweig 38106,Germany.

出版信息

Opt Express. 2010 Mar 15;18(6):6097-107. doi: 10.1364/OE.18.006097.

Abstract

We report on a first experimental study of the molecular properties of nematic liquid crystals in the terahertz range. In the beginning, we extract the frequency and temperature dependent refractive index and absorption coefficient of the cyanobiphenyls 5CB, 6CB and 7CB from terahertz time domain spectroscopy measurements and investigate the impact of the alkyl chain length on the macroscopic liquid crystal characteristics, focusing especially on the pronounced odd and even effect. Next, we deduce the principle polarizabilities and the order parameter S by applying Vuks' approximation and Haller's approach. On this basis, we calculate the main polarizabilities along the longitudinal and transverse axis and link the observed terahertz properties to the molecular structure of the liquid crystals.

摘要

我们报告了对向列型液晶在太赫兹波段分子特性的首次实验研究。首先,我们从太赫兹时域光谱测量中提取了氰基联苯5CB、6CB和7CB的频率和温度依赖性折射率及吸收系数,并研究了烷基链长度对宏观液晶特性的影响,尤其关注显著的奇偶效应。接下来,我们通过应用武克斯近似法和哈勒方法推导出主极化率和序参数S。在此基础上,我们计算了沿纵向和横向轴的主极化率,并将观察到的太赫兹特性与液晶的分子结构联系起来。

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