首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Discrete-dipole approximation for periodic targets: theory and tests
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Discrete-dipole approximation for periodic targets: theory and tests

机译:周期性目标的离散偶极近似:理论和测试

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The discrete-dipole approximation (DDA) is a powerful method for calculating absorption and scattering by targets that have sizes smaller than or comparable to the wavelength of the incident radiation. The DDA can be extended to targets that are singly or doubly periodic. We generalize the scattering amplitude matrix and the 4 X 4 Mueller matrix to describe scattering by singly and doubly periodic targets and show how these matrices can be calculated using the DDA. The accuracy of DDA calculations using the open-source code DDSCAT is demonstrated by comparison with exact results for infinite cylinders and infinite slabs. A method for using the DDA solution to obtain fields within and near the target is presented, with results shown for infinite slabs.
机译:离散偶极近似(DDA)是用于计算尺寸小于或等于入射辐射波长的目标的吸收和散射的强大方法。 DDA可以扩展到单个或双重周期性的目标。我们对散射振幅矩阵和4 X 4 Mueller矩阵进行了概括,以通过单个和双重周期性目标描述散射,并展示了如何使用DDA计算这些矩阵。通过与无限圆柱和无限平板的精确结果进行比较,证明了使用开源代码DDSCAT进行DDA计算的准确性。提出了一种使用DDA解决方案获取目标内和目标附近场的方法,并显示了无限平板的结果。

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