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Effective phase function of light scattered at small angles by polydisperse particulate media

机译:通过多分散颗粒介质以小角度散射光的有效相位函数

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Particles with typical dimensions higher than the light wavelength and relative refraction indexes close to one, scatter light mainly in the forward direction where the scattered light intensity has a narrow peak. For particulate media accomplishing these requirements the light scattered at small angles in a far-field detecting set-up can be described analytically by an effective phase function (EPF) even in the multiple scattering regime. The EPF model which was built for monodispersed systems has been extended to polydispersed media. The main ingredients consist in the replacement of the single particle phase function and of the optical thickness with their corresponding averaged values. Using a Gamma particle size distribution (PSD) as a testing model, the effect of polydispersity was systematically investigated. The increase of the average radius or/and of the PSD standard deviation leads to the decrease of the angular spreading of the small angle scattered light
机译:具有典型尺寸的颗粒高于光波长和接近一个的相对折射率,主要散射光线,其中散射光强度具有窄峰。对于颗粒介质实现这些要求,即使在多个散射方案中,也可以通过有效的相位函数(EPF)分析在远场检测设置中以小角度分散的光。为单分散系统构建的EPF模型已扩展到多分散的媒体。主要成分在替换单粒子相位和光学厚度的情况下,具有它们相应的平均值。使用伽马粒度分布(PSD)作为测试模型,系统地研究了多分散性的效果。平均半径或/和PSD标准偏差的增加导致小角度散射光的角度扩展的减小

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