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Scattering and Absorption Properties of Polydisperse Wavelength-sized Particles Covered with Much Smaller Grains

机译:粒径小得多的多分散波长大小颗粒的散射和吸收特性

摘要

Using the results of direct, numerically exact computer solutions of the Maxwell equations, we analyze scattering and absorption characteristics of polydisperse compound particles in the form of wavelength-sized spheres covered with a large number of much smaller spherical grains.The results pertain to the complex refractive indices1.55 + i0.0003,1.55 + i0.3, and 3 + i0.1. We show that the optical effects of dusting wavelength-sized hosts by microscopic grains can vary depending on the number and size of the grains as well as on the complex refractive index. Our computations also demonstrate the high efficiency of the new superposition T-matrix code developed for use on distributed memory computer clusters.
机译:利用直接,数值精确的麦克斯韦方程组计算机求解的结果,我们分析了波长分散的球体形式的多分散化合物颗粒的散射和吸收特性,该球体覆盖有许多小得多的球形颗粒。折射率1.55 + i0.0003、1.55 + i0.3和3 + i0.1。我们表明,通过微观晶粒对波长大小的主体进行除尘的光学效果可能会有所不同,具体取决于晶粒的数量和大小以及复数折射率。我们的计算还证明了为在分布式存储计算机集群上使用而开发的新型叠加T矩阵代码的高效率。

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