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Heterodyne polariscope for sequential measurements of the complete optical parameters of a multiple-order wave plate

机译:外差偏振镜,用于顺序测量多阶波片的完整光学参数

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A new heterodyne polariscope for sequential measurements of the complete optical parameters of linearly birefringent materials is proposed. A multiple-order crystalline quartz quarter-wave plate used as a sample was tested in two sequential setups. In the first setup we used an electro-optic modulator to modulate the circular heterodyne polariscope and then applied a phase-locking technique to measure the principal axis angle precisely. In the second setup, removing the first quarter-wave plate, resulted in a linear heterodyne polariscope, and again we used the phase-locking technique to extract the apparent retardance. Furthermore, by tilting the sample and placing a material of known thickness into the second setup, we determined the order, thickness, and refractive indices (n_(e) and n_(o)) of a multiple-order wave plate by using the new algorithm. The proposed method has average absolute errors of 0.2167 deg and 0.15percent with respect to the principal axis angle and the apparent retardance, respectively. The order, thickness, and refractive indices are also in good agreement with the known sample data. In contrast to the conventional measurement schemes that could not measure more than two parameters, the proposed heterodyne polariscope uniquely measures six parameters.
机译:提出了一种新的外差式偏光镜,用于顺序测量线性双折射材料的完整光学参数。在两个连续的装置中测试了用作样品的多阶晶体石英四分之一波片。在第一个设置中,我们使用电光调制器调制圆形外差偏振镜,然后应用锁相技术精确测量主轴角度。在第二种设置中,移除第一个四分之一波片,得到线性外差偏振镜,然后我们再次使用锁相技术提取视在延迟。此外,通过倾斜样品并将已知厚度的材料放入第二设置中,我们使用新的方法确定了多阶波片的阶数,厚度和折射率(n_(e)和n_(o))。算法。所提出的方法相对于主轴角和视在延迟的平均绝对误差分别为0.2167度和0.15%。顺序,厚度和折射率也与已知样品数据高度吻合。与不能测量两个以上参数的常规测量方案相反,提出的外差偏振镜唯一地测量六个参数。

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