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Reinvestigation of Electric Field-Induced Optical Activity in α-Quartz: Application of a Polarimeter With Four Photoelastic Modulators

机译:对电场在α-石英中的光学活性的再研究:具有四个光弹性调制器的旋光仪的应用

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摘要

Linear electrogyration (electric field-induced optical activity) and electro-optic effects in x-cut and z-cut right-handed (RH) α-quartz were measured using a complete Mueller matrix polarimeter. The polarimeter used in the analysis was equipped with four photoelastic modulators operating at different frequencies. This configuration is especially sensitive due to the fidelity of the modulators and the fact that all the Mueller matrix elements can be delivered without any moving optical elements. The linear electrogyration coefficient γ_(11) as a function of the wavelength of incident light was remeasured. The coefficient γ_(33), required by symmetry to be zero, was evaluated as a control. γ_(11) was much smaller than values obtained previously using devices dependent on mechanical light modulation. Electrogyration measurements have often been confounded by the much larger linear electro-optic effect. The Mueller calculus used herein is well suited to the separation of the competing changes to the polarization state of light. Quadratic electrogyration associated with elements β_(11) and β_(33) was not detectable.
机译:使用完整的Mueller矩阵旋光仪测量x切和z切右旋(RH)α-石英中的线性电回转(电场诱导的光学活性)和电光效应。分析中使用的旋光仪配备了四个以不同频率工作的光弹性调制器。由于调制器的保真度以及所有Mueller矩阵元件都可以在没有任何移动光学元件的情况下被传送的事实,这种配置特别敏感。重新测量了线性电回转系数γ_(11)作为入射光波长的函数。对称性要求为零的系数γ_(33)被评估为对照。 γ_(11)比以前使用依赖于机械光调制的设备获得的值小得多。电陀螺测量经常被更大的线性电光效应所混淆。本文使用的穆勒演算非常适合分离光的偏振态的竞争性变化。无法检测到与元素β_(11)和β_(33)相关的二次电回转。

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