Determination of the polarization plane specific rotation in gyrotropic crystals of the middle category by the spectrophotometric method

E. V. Zabelina, R. Shahin, N. Kozlova, V. Kasimova
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Abstract

A large number of modern functional single crystals of the middle category belong to gyrotropic media. In these crystals, when light propagates along the optical axis, rotation of the plane of its polarization is observed. In this work a spectrophotometric method was used to obtain the dispersion dependences of the rotation angle of the polarization plane. This method is based on measuring the intensity of light passing through the polarizer–crystal–analyzer system, the crystal is a polished plane-parallel plate of a uniaxial gyrotropic crystal cut perpendicular to the optical axis. Measurements were carried out on a UV-Vis-NIR spectrophotometer Cary-5000 in the wavelength range of 200—1200 nm using polarizers — Glan–Taylor prisms. Polished plane-parallel plates of known SiO2 and α-LiIO3 crystals were used as samples. The obtained dispersion dependences of the spectral transmission coefficients are oscillating. Discrete values of the specific angles of rotation of the plane of polarization of light are calculated from the extremes on these dependencies. These discrete values can be approximated by the formulas Drude, Chanrasekahar and Vyshina, depending on what determines the nature of the rotational ability of the plane of polarization of light in each particular material. For the studied crystals, dependences of the modified Drude formula of the form 1/ρ = f(λ2) are plotted, these dependences should have a linear character in the case of an ideal crystal. The obtained experimental results correlate well with the available literature data. The advantages of this method are efficiency, the possibility of obtaining dispersion dependences of the specific rotation angle of the polarization plane, the need for a single sample, the possibility of assessing the nature of the rotational ability of specific crystals, the possibility of evaluating the structural perfection of the studied crystals.
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用分光光度法测定中间类旋回晶体的偏振面比旋
现代大量的中间类功能单晶属于回旋介质。在这些晶体中,当光沿着光轴传播时,可以观察到其偏振平面的旋转。本文采用分光光度法测定了偏振面旋转角度与色散的关系。该方法是基于测量光通过偏振晶体分析仪系统的强度,晶体是垂直于光轴切割的单轴陀螺晶体的抛光平平行板。在Cary-5000型紫外-可见-近红外分光光度计上,采用偏光片Glan-Taylor棱镜,在200 - 1200nm波长范围内进行了测量。以已知SiO2和α-LiIO3晶体的抛光平面平行板为样品。得到的光谱透射系数的色散关系是振荡的。光的偏振平面的特定旋转角度的离散值是从这些依赖关系的极值计算出来的。这些离散值可以用Drude, Chanrasekahar和Vyshina公式来近似,这取决于决定每种特定材料中光的偏振面旋转能力的性质。对于所研究的晶体,绘制了形式为1/ρ = f(λ2)的修正德鲁德公式的依赖关系,在理想晶体的情况下,这些依赖关系应该具有线性特征。所得实验结果与现有文献数据吻合较好。该方法的优点是效率高,可以获得偏振面特定旋转角的色散依赖关系,不需要单个样品,可以评估特定晶体旋转能力的性质,可以评估所研究晶体的结构完善性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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