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Experimental and modeling investigation of binary liquid mixtures

机译:二元液体混合物的实验和建模研究

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Binary mixtures of liquids may be encountered in industrial or remote sensing scenarios and present challenges to positive identification compared to neat single-component liquids. Our investigation examines whether one can predict the optical properties of the mixture, i.e. its complex index of refraction, by assuming a linear superposition of the real and imaginary components of the index of refraction in proportion to the ratio of each constituent. To investigate this hypothesis various liquid mixtures were created using mass ratios. The mixtures were then characterized as to their complex index of refraction and used in numerical modeling calculations of thin liquid mixture films on surfaces and compared with composed mixtures using linear n and k synthetic mixtures where the n and k components of the complex index of refraction were combined in similar ratios. The comparison of modeling and experimental results is presented with recommendations for further investigation.
机译:在工业或遥感情景中可能遇到液体的二元混合物,与整齐的单组分液体相比,对阳性鉴定的挑战。 我们的研究考虑了一种人是否可以预测混合物的光学性质,即其复杂的折射率,通过假设折射率指数与每个组分的比例成比例的实际和虚部的线性叠加。 为了研究该假设,使用质量比产生各种液体混合物。 然后将混合物表征为其复合折射率,并在表面上的薄液体混合物膜的数值建模计算中使用,并与使用线性N和K合成混合物的组成混合物进行比较,其中折射率的复数的N和K组分是 结合类似的比率。 建模和实验结果的比较提出了进一步调查的建议。

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