Wiscombe W J
Appl Opt. 1980 May 1;19(9):1505-9. doi: 10.1364/AO.19.001505.
Scattering of electromagnetic radiation from a sphere, so-called Mie scattering, requires calculations that can become lengthy and even impossible for those with limited resources. At the same time, such calculations are required for the widest variety of optical applications, extending from the shortest UV to the longest microwave and radar wavelengths. This paper briefly describes new and thoroughly documented Mie scattering algorithms that result in considerable improvements in speed by employing more efficient formulations and vector structure. The algorithms are particularly fast on the Cray-1 and similar vector-processing computers.
来自球体的电磁辐射散射,即所谓的米氏散射,其计算可能会变得冗长,对于资源有限的人来说甚至是不可能的。与此同时,从最短的紫外线到最长的微波和雷达波长的各种光学应用都需要进行这样的计算。本文简要介绍了新的且有详尽记录的米氏散射算法,这些算法通过采用更高效的公式和向量结构,在速度上有了显著提高。这些算法在Cray - 1和类似的向量处理计算机上运行得特别快。