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A comparison of techniques used to simulate the scattering of electromagnetic radiation by metallic nanostructures

机译:金属纳米结构用于模拟电磁辐射散射的技术比较

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A comparison is presented of a number of simulation techniques that are used to compute the scattering of electromagnetic radiation by metallic nanostructures. The simulation techniques considered here are Mie theory, the T-Matrix null-field method, the discrete-dipole approximation, the finite-element method and the finite-difference time-domain method. The suitability of each technique is compared in terms of the accuracy, computation time and the range of geometries to which it can be applied. Using each technique, we perform example calculations by simulating the optical response of an 80 nm diameter Au sphere in vacuum. Our main conclusions are summarised in tabulated form, so that the findings presented in this article may serve as a useful reference guide to those looking for suitable numerical tools to model the optical response of metallic nanostructures.
机译:比较了许多模拟技术,这些计算技术用于计算金属纳米结构对电磁辐射的散射。这里考虑的仿真技术是Mie理论,T矩阵零场方法,离散偶极近似,有限元方法和时域有限差分法。比较每种技术的适用性,包括准确性,计算时间和可应用的几何范围。使用每种技术,我们通过模拟真空中直径为80 nm的金球的光学响应来执行示例计算。我们的主要结论以表格形式进行了总结,因此,本文中提出的发现可能对那些正在寻找合适的数值工具来对金属纳米结构的光学响应进行建模的人员提供有用的参考指南。

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