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Numerical simulation of surface roughness impact on dust optical properties

机译:表面粗糙度对粉尘光学性能影响的数值模拟

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摘要

A stochastic differential equation method is introduced for geometric modeling of dust surface roughness along with discrete differential geometry technique. Optical scattering properties are computed for randomly oriented spheroidal particles with uniformly random surface roughness. Invariant imbedding T-Matrix and geometric optics method are applied to compute light scattering properties of dust particles covering from Rayleigh to geometric optics region. We simulated optical scattering properties of feldspar with these new model particles, which shows better performance than smooth spheroids. In addition, we also introduce entropy and relative entropy as similarity measures of particle scattering properties, especially phase functions.
机译:介绍了一种随机微分方程方法,结合离散微分几何技术对粉尘表面粗糙度进行几何建模。计算具有均匀随机表面粗糙度的随机取向的球形颗粒的光学散射特性。应用不变嵌入T矩阵和几何光学方法计算了从瑞利到几何光学区域的尘埃颗粒的光散射特性。我们使用这些新的模型粒子模拟了长石的光学散射特性,该特性显示出比光滑球体更好的性能。此外,我们还引入了熵和相对熵作为粒子散射特性(尤其是相函数)的相似性度量。

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