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Periodicity assisted scattering and absorption of light by finite layered gratings of silver nanowires

机译:通过有限分层的银纳米线辅助散射和光吸收光

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We consider the two-dimensional (2-D) problem of the H-polarized plane wave scattering by discrete arrays made of finite number of periodically arranged circular cylindrical nanowires. Using the Fourier expansions of the field in local coordinates and addition theorems for cylindrical functions, we perform analytical regularization and obtain a block-type matrix equation. This equation is cast to the Fredholm second-kind form that guarantees, after truncation, the convergence of numerical solution. In computations, we consider the gratings with shifted layers made of silver nanowires in the visible-light range of wavelengths. The scattering and absorption cross-sections and near-field patterns are calculated and the interplay of plasmon and periodicity-induced resonances is studied.
机译:我们考虑由由有限数周期性圆柱形纳米线制成的离散阵列的H偏振平面波散射的二维(2-D)问题。使用本地坐标中的字段的傅立叶扩展以及用于圆柱函数的添加定理,我们执行分析正则化并获得块型矩阵方程。将该等式铸造给弗雷霍姆的第二种形式,在截断后保证数值解决方案的收敛性。在计算中,我们考虑具有由银纳米线制成的换档层的光栅,在可见光范围的波长范围内。计算散射和吸收横截面和近场模式,研究了等离子体和周期性诱导的共振的相互作用。

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