Mishchenko Michael I, Liu Li, Hovenier Joop W
Opt Express. 2007 Oct 1;15(20):13182-7. doi: 10.1364/oe.15.013182.
We employ the numerically exact superposition T-matrix method to perform extensive computations of elec nottromagnetic scattering by a volume of discrete random medium densely filled with increasingly absorbing as well as non-absorbing particles. Our numerical data demonstrate that increasing absorption diminishes and nearly extinguishes certain optical effects such as depolarization and coherent backscattering and increases the angular width of coherent backscattering patterns. This result corroborates the multiple-scattering origin of such effects and further demonstrates the heuristic value of the concept of multiple scattering even in application to densely packed particulate media.
我们采用数值精确的叠加T矩阵方法,对由大量离散随机介质构成的体积进行电磁散射的广泛计算,该介质密集填充有吸收性不断增强以及非吸收性的粒子。我们的数值数据表明,吸收的增加会减弱并几乎消除某些光学效应,如去极化和相干背散射,并增加相干背散射图案的角宽度。这一结果证实了此类效应的多重散射起源,并进一步证明了多重散射概念的启发式价值,即使在应用于密集堆积的颗粒介质时也是如此。