Frisvad Jeppe Revall
J Opt Soc Am A Opt Image Sci Vis. 2018 Apr 1;35(4):669-680. doi: 10.1364/JOSAA.35.000669.
In absorbing media, electromagnetic plane waves are most often inhomogeneous. Existing solutions for the scattering of an inhomogeneous plane wave by a spherical particle provide no explicit expressions for the scattering components. In addition, current analytical solutions require evaluation of the complex hypergeometric function F2 for every term of a series expansion. In this work, I develop a simpler solution based on associated Legendre functions with argument zero. It is similar to the solution for homogeneous plane waves but with new explicit expressions for the angular dependency of the far-field scattering components, that is, the phase function. I include recurrence formulas for practical evaluation and provide numerical examples to evaluate how well the new expressions match previous work in some limiting cases. The predicted difference in the scattering phase function due to inhomogeneity is not negligible for light entering an absorbing medium at an oblique angle. The presented theory could thus be useful for predicting scattering behavior in dye-based random lasing and in solar cell absorption enhancement.
在吸收性介质中,电磁平面波通常是不均匀的。现有的关于球形粒子对不均匀平面波散射的解决方案没有给出散射分量的显式表达式。此外,当前的解析解需要对级数展开的每一项计算复超几何函数F2。在这项工作中,我基于自变量为零的连带勒让德函数开发了一种更简单的解决方案。它类似于均匀平面波的解决方案,但对于远场散射分量的角度依赖性(即相位函数)有新的显式表达式。我给出了用于实际计算的递推公式,并提供了数值示例来评估在某些极限情况下新表达式与先前工作的匹配程度。对于以斜角进入吸收性介质的光,由于不均匀性导致的散射相位函数的预测差异不可忽略。因此,所提出的理论可用于预测基于染料的随机激光和太阳能电池吸收增强中的散射行为。