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A spectral element method calculation of extraordinary light transmission through periodic subwavelength slits

机译:透过亚周期缝隙的非寻常光透射的光谱元素方法计算

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A spectral element method together with a surface integral equation as the radiation boundary condition is used to simulate the scattering properties of periodic subwavelength slits. The surface integral equation utilizes the periodic Green's function in the wave number space and is solved by the method of moments, while the interior inhomogeneous medium is modeled by the spectral element method. The solution convergence is found to be exponential; i.e., the error decreases exponentially with the order of basis functions. To our knowledge, such a fast solver with spectral accuracy is new in the scattering problem of periodic structures. Scattering properties of a gold slit grid within the whole wavelength-incidence angle parameter space are investigated, with the confirmation that strong transmission of light through subwavelength slits is achievable.
机译:使用光谱元素方法和表面积分方程作为辐射边界条件,来模拟周期性亚波长缝隙的散射特性。表面积分方程利用波数空间中的周期格林函数并通过矩量法求解,而内部非均匀介质则通过谱元法建模。发现解决方案收敛是指数的。即,误差随基函数的阶数呈指数下降。据我们所知,这种具有光谱精度的快速求解器在周期性结构的散射问题中是新的。研究了金狭缝栅格在整个波长入射角参数空间内的散射特性,并证实了可以实现通过亚波长狭缝的强光传输。

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