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A Wavefront Division Polarimeter for the Measurements of Solute Concentrations in Solutions

机译:波前分光仪用于测量溶液中的溶质浓度

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摘要

Polarimeters are useful instruments that measure concentrations of optically active substances in a given solution. The conventional polarimetric principle consists of measuring the rotation angle of linearly polarized light. Here, we present a novel polarimeter based on the study of interference patterns. A Mach–Zehnder interferometer with linearly polarized light at the input is used. One beam passes through the liquid sample and the other is a reference beam. As the linearly polarized sample beam propagates through the optically active solution the vibration plane of the electric field will rotate. As a result, the visibility of the interference pattern at the interferometer output will decrease. Fringe contrast will be maximum when both beams present a polarization perpendicular to the plane of incidence. However, minimum visibility is obtained when, after propagation through the sample the polarization of the sample beam is oriented parallel to the plane of incidence. By using different solute concentrations, a calibration plot is obtained showing the behavior of visibility.
机译:旋光仪是用于测量给定溶液中光学活性物质浓度的有用仪器。常规的偏振原理包括测量线性偏振光的旋转角度。在这里,我们提出了一种基于干涉图样的新型偏振计。使用在输入处带有线性偏振光的马赫曾德尔干涉仪。一个光束穿过液体样品,另一个光束是参考光束。当线性偏振的样本光束传播通过光学活性溶液时,电场的振动平面将旋转。结果,干涉仪输出处的干涉图的可见度将降低。当两个光束都呈现垂直于入射平面的偏振时,边缘对比度最大。但是,当在穿过样本传播之后,样本光束的偏振方向平行于入射平面时,将获得最小的可见性。通过使用不同的溶质浓度,可以获得显示可见度行为的校准图。

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