首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Theoretical and experimental study of the diffuse transmission of light through highly concentrated absorbing and scattering materials Part I: Monte-Carlo simulations
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Theoretical and experimental study of the diffuse transmission of light through highly concentrated absorbing and scattering materials Part I: Monte-Carlo simulations

机译:光通过高浓度吸收和散射材料的漫透射的理论和实验研究第一部分:蒙特卡洛模拟

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In many technical materials and commercial products like sunscreen or paint high particle and absorber concentrations are present. An important parameter for slabs of these materials is the diffuse transmission of light, which quantifies the total amount of directly and diffusely transmitted light. Due to the high content of scattering particles not only multiple scattering but also additional dependent scattering occurs. Hence, simple analytical models cannot be applied to calculate the diffuse transmission. In this work a Monte-Carlo program for the calculation of the diffuse transmission of light through dispersions in slab-like geometry containing high concentrations of scattering particles and absorbers is presented and discussed in detail. Mie theory is applied for the calculation of the scattering properties of the samples. Additionally, dependent scattering is considered in two different models, the well-known hard sphere model in the Percus-Yevick approximation (HSPYA) and the Yukawa model in the Mean Spherical Approximation (YMSA). Comparative experiments will show the accurateness of the program as well as its applicability to real samples [1]. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在许多技术材料和商业产品(如防晒霜或油漆)中,都存在高浓度的颗粒和吸收剂。这些材料的平板的一个重要参数是光的漫透射,它可以量化直接和漫透射光的总量。由于散射颗粒的含量高,不仅会发生多重散射,还会发生其他相关的散射。因此,不能将简单的分析模型应用于计算漫透射。在这项工作中,提出并详细讨论了蒙特卡洛程序,该程序用于计算通过平板状几何形状中的分散体的光的漫透射,该几何形状包含高浓度的散射粒子和吸收剂。米氏理论被用于计算样品的散射特性。此外,在两个不同的模型中考虑了相依散射,一种是Percus-Yevick近似(HSPYA)中的众所周知的硬球模型,另一种是平均球面近似(YMSA)中的Yukawa模型。对比实验将显示该程序的准确性及其在实际样品中的适用性[1]。 (C)2014 Elsevier Ltd.保留所有权利。

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