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Optical reflectivity of an interface with random refractive-index-contrast patterns

机译:具有随机折射率对比度模式的接口的光学反射率

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We develop simple models for the optical reflectivity of an interface in optical contact with random media consisting of discrete volumes of arbitrary form and different refractive indices. Examples of interest are surfaces sprinkled with microdroplets or an interface with biological cells adhered to it at random locations. We focus our attention to the case of internal reflectivity, in which the incidence medium has a larger refractive index than the refractive indices at the other side of the interface. Assuming an incident plane wave, we provide simple approximate expressions for the surface's coherent reflectance and for the surface's total reflectance. We compare predictions of the surface coherent-reflectance model with numerical simulations. Then we use the surface's reflectance models to interpret experimental measurements obtained with an optical prism and a thin vegetable tissue adhered to its base. In general, the surface reflectivity can be used to determine fractional contact area between the interface and microdroplets or biological cells and infer their refractive indices with an accuracy of about 0.5%. (C) 2020 Optical Society of America
机译:我们开发用于光学接触的光学反射率的简单模型,与随机介质组成的任意介质,包括任意形式和不同的折射率。感兴趣的实例是撒上微型电流的表面或与随机位置粘附在其上的生物细胞的界面。我们将注意力集中在内部反射率的情况下,发病介质具有比界面另一侧的折射率更大的折射率。假设事故平面波,我们为表面的相干反射率和表面的总反射率提供了简单的近似表达。我们将表面相干反射模型与数值模拟的预测进行了比较。然后,我们使用表面的反射模型来解释用光学棱镜获得的实验测量和粘附在其基部的薄蔬菜组织。通常,表面反射率可用于确定界面和微滴板或生物细胞之间的分数接触面积,并以约0.5%的精度推断它们的折射率。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共9页
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  • 正文语种 eng
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