Mishchenko Michael I, Dlugach Janna M
Appl Opt. 2019 Jun 20;58(18):4871-4877. doi: 10.1364/AO.58.004871.
We study multiple scattering of light by particles embedded in an absorbing host medium using a recently developed single-scattering and vector radiative-transfer methodology directly based on the Maxwell equations. The first-principles results are compared with those rendered by the conventional heuristic approach according to which the single-scattering properties of particles can be computed by assuming that the host medium is nonabsorbing. Our analysis shows that the conventional approach yields very accurate results in the case of aerosol and cloud particles suspended in an absorbing gaseous atmosphere. In the case of air bubbles in water, the traditional approach can cause large relative errors in reflectance, but only when strong absorption in the host medium makes the resulting reflectance very small. The corresponding polarization errors are substantially smaller.
我们使用一种最近开发的、直接基于麦克斯韦方程组的单散射和矢量辐射传输方法,研究嵌入吸收性主体介质中的粒子对光的多重散射。将第一性原理结果与传统启发式方法得到的结果进行比较,按照传统方法,粒子的单散射特性可通过假设主体介质是非吸收性的来计算。我们的分析表明,对于悬浮在吸收性气态大气中的气溶胶和云粒子,传统方法能得出非常准确的结果。对于水中的气泡,传统方法在反射率方面可能会导致较大的相对误差,但仅当主体介质中的强吸收使得最终反射率非常小时才会如此。相应的偏振误差要小得多。