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Refractive index measurement of turbid media by transmission of backscattered light near the critical angle

机译:通过在临界角附近透射反向散射光来测量混浊介质的折射率

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摘要

We investigate experimentally the determination of the effective refractive index (RI) of a turbid particle suspension from the angle dependence of light scattered by the particles and then transmitted into a transparent prism of higher RI. We assembled a versatile experimental device that may be recognized as an Abbe-type refractometer in which the sample is illuminated from the prism side and use it to measure the intensity profile of diffuse light refracted into the prism around the critical angle. By fitting a recently proposed theoretical model we extract the complex RI of turbid suspensions of particles from the measured intensity profiles. We show that the real part of the effective RI is readily obtained with good precision regardless of how the sample is illuminated, whereas obtaining the imaginary part is done with less precision but nevertheless useful measurements can be obtained. The effective RI obtained with this method compares very well with the so-called van de Hulst effective RI and the one derived from Keller's model of the effective propagation constant.
机译:我们实验研究混浊的颗粒悬浮液的有效折射率(RI),由颗粒散射的光的角度相关性确定,然后将其传输到更高RI的透明棱镜中。我们组装了一个通用的实验设备,该设备可以被认为是阿贝型折光仪,其中样品从棱镜一侧照亮,并用它来测量在临界角附近折射到棱镜中的漫射光的强度分布。通过拟合最近提出的理论模型,我们从测得的强度曲线中提取了浑浊的颗粒悬浮液的复数RI。我们表明,无论如何照亮样品,都可以以良好的精度轻松获得有效RI的实部,而获得虚部的精度较低,但是仍然可以获得有用的测量值。通过这种方法获得的有效RI与所谓的van de Hulst有效RI以及从凯勒有效传播常数模型推导的有效RI很好地比较。

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