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Accurate Analysis of Light Scattering and Absorption by an Infinite Flat Grating of Thin Silver Nanostrips in Free Space Using the Method of Analytical Regularization

机译:使用分析正则化方法精确分析自由空间中无限薄银纳米带的平坦光栅对光的散射和吸收

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摘要

We study the plane wave scattering and absorption by a flat grating of thin silver nanostrips located in free space, in the visible-light range. The formulation involves generalized boundary conditions imposed on the strip median lines. We use an accurate numerical solution to this problem based on the dual-series equations and the method of analytical regularization. This guarantees fast convergence and controlled accuracy of computations. Reflectance, transmittance, and absorbance as a function of the wavelength and the grating parameters are analyzed. In addition to well-known surface-plasmon resonances, sharp resonances are revealed in the H-polarized scattering near but not equal to the Rayleigh wavelengths of nonzero diffraction orders; in the E-polarized scattering these resonances are not visible. Asymptotic formulas for the frequencies and natural fields of the grating resonances are presented.
机译:我们研究了可见光范围内位于自由空间中的薄银纳米带的平面光栅对平面波的散射和吸收。该公式涉及施加在带状中线上的广义边界条件。我们基于双级数方程和解析正则化方法对这个问题使用精确的数值解。这保证了快速收敛和受控的计算精度。分析反射率,透射率和吸收率与波长和光栅参数的关系。除了众所周知的表面等离振子共振,在接近但不等于非零级衍射级的瑞利波长的H偏振散射中,还可以看到清晰的共振。在E极化散射中,这些共振是不可见的。给出了光栅共振频率和自然场的渐近公式。

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