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Modeling optical properties of mineral aerosol particles by using nonsymmetric hexahedra

机译:使用非对称六面体建模矿物气溶胶颗粒的光学特性

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We explore the use of nonsymmetric geometries to simulate the single-scattering properties of airborne dust particles with complicated morphologies. Specifically, the shapes of irregular dust particles are assumed to be nonsymmetric hexahedra defined by using the Monte Carlo method. A combination of the discrete dipole approximation method and an improved geometric optics method is employed to compute the single-scattering properties of dust particles for size parameters ranging from 0.5 to 3000. The primary optical effect of eliminating the geometric symmetry of regular hexahedra is to smooth the scattering features in the phase function and to decrease the backscatter. The optical properties of the nonsymmetric hexahedra are used to mimic the laboratory measurements. It is demonstrated that a relatively close agreement can be achieved by using only one shape of nonsymmetric hexahedra. The agreement between the theoretical results and their measurement counterparts can be further improved by using a mixture of nonsymmetric hexahedra. It is also shown that the hexahedron model is much more appropriate than the "equivalent sphere" model for simulating the optical properties of dust particles, particularly, in the case of the elements of the phase matrix that associated with the polarization state of scattered light.
机译:我们探索使用非对称几何形状来模拟具有复杂形态的机载尘埃粒子的单散射特性。具体地,不规则灰尘颗粒的形状被假定为通过使用蒙特卡洛方法定义的非对称六面体。离散偶极近似方法与改进的几何光学方法相结合,用于计算尺寸参数范围为0.5到3000的尘埃粒子的单散射特性。消除常规六面体的几何对称性的主要光学效果是平滑相位函数中的散射特征可以减少反向散射。非对称六面体的光学性质用于模拟实验室测量。已经证明,仅使用一种形状的非对称六面体可以实现相对紧密的一致性。通过使用非对称六面体的混合物,可以进一步提高理论结果与测量对象之间的一致性。还显示出,六面体模型比“等效球体”模型更适合于模拟灰尘颗粒的光学特性,特别是在相矩阵的元素与散射光的偏振态相关的情况下。

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