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Scattering from fractal superlattices with variable lacunarity

机译:裂隙度可变的分形超晶格散射

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Reflection and transmission properties of polyadic fractal superlattices are formulated, solved analytically, and characterized for variations in fractal dimension, lacunarity, number of gaps, stage of growth, and angle of incidence. We systematically study the effect of the lacunarity or homogeneity of gaps on the scattering characteristics of these superlattices. The salient features of this scattering are captured by families of reflection data that denote twist plots. We find evidence that fractal dimension, lacunarity and stage of growth, can be distinguished in these plots. The analytic solution described here is a doubly recursive technique that efficiently provides the reflection and transmission coefficients of a large class of Canter superlattices. This may provide a significant computational advantage over traditional methods as the number of interfaces becomes large. (C) 1998 Optical Society of America. [References: 27]
机译:公式化,解析地求解多元分形超晶格的反射和透射特性,并针对分形维数,空隙度,间隙数,生长阶段和入射角的变化进行表征。我们系统地研究间隙的间隙或均匀性对这些超晶格的散射特性的影响。该散射的显着特征由表示扭曲图的反射数据族捕获。我们发现在这些图中可以区分分形维数,裂隙度和生长阶段的证据。此处描述的解析解决方案是一种双递归技术,可有效提供一大类Canter超晶格的反射系数和透射系数。随着接口数量的增加,这可能会提供比传统方法明显的计算优势。 (C)1998年美国眼镜学会。 [参考:27]

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