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Simultaneous absolute measurements of principal angle and phase retardation with a new common-path heterodyne interferometer

机译:新型共径外差干涉仪同时测量主角和相位延迟的绝对值

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摘要

This study demonstrates a new method for simultaneously measuring both the angle of the principal axis and the phase retardation of the linear birefringence in optical materials. We used a circular commonpath interferometer (polariscope) as the basic structure modulated by an electro-optic (EO) modulator. An algorithm was developed to simultaneously measure the principal axis and the phase retardation of a λ/4 or λ/8 plate as a sample. In the case of a λ/4 plate, the average absolute error of the principal axis is approximately 3.77°, and that of the phase retardation is approximately 1.03° (1.09%). The retardation error is within the 5% uncertainty range of a commercial wave plate. Fortunately, the nonlinear error caused by the reflection phase retardation of the beam splitter dose not appear in the new system. Therefore the error could be attributed to misalignment and defects in the EO modulator or the other optical components. As for the repeatability of this new common-path heterodyne interferometer, the average deviation for the principal axis is 0.186° and the phase retardation is 0.356°. For the stability, the average deviation for the principal axis is 0.405° and the phase retardation is 0.635°. The resolution of this new system is estimated to be ~0.5°, and the principal axis and phase retardation could be measured up to π and 2π, respectively, without ambiguity.
机译:这项研究表明了一种同时测量光学材料中主轴角度和线性双折射相位延迟的新方法。我们使用圆形共通干涉仪(偏光镜)作为由电光(EO)调制器调制的基本结构。开发了一种算法来同时测量作为样本的λ/ 4或λ/ 8板的主轴和相位延迟。在λ/ 4板的情况下,主轴的平均绝对误差约为3.77°,而相位延迟的平均绝对误差约为1.03°(1.09%)。延迟误差在商用波片的5%不确定范围内。幸运的是,由分束器的反射相位延迟引起的非线性误差不会出现在新系统中。因此,该错误可归因于EO调制器或其他光学组件中的未对准和缺陷。至于这种新型共通外差式干涉仪的可重复性,主轴的平均偏差为0.186°,相位差为0.356°。为了稳定性,主轴的平均偏差为0.405°,相位延迟为0.635°。该新系统的分辨率估计为〜0.5°,主轴和相位延迟分别可以测量到π和2π,而没有歧义。

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