Electrodynamic analysis of ring and disk nanoarrays

I. N. Ivanova, A. Lerer, E. Golovacheva
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Abstract

The boundary problem of diffraction electromagnetic waves on two-dimensional periodic metal gratings has been solved with taking into account finite permittivity of metal in the optic range. The suggested technique is based on approach of approximate boundary conditions for thin dielectric layers. It is pointed out that dependence of magnitude of a scattered field on wavelength has resonant behavior and resonant wavelength is many times higher than size of cell of grating. It is shown the possibility of designing of grating with high reflection coefficient at frequencies of plasmon resonance.
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环形和圆盘纳米阵列的电动力学分析
考虑金属在光学范围内的有限介电常数,求解了二维周期金属光栅上的衍射电磁波边界问题。所提出的方法是基于近似边界条件的方法。指出散射场的大小与波长的关系具有共振特性,且共振波长比光栅单元的尺寸大许多倍。指出了在等离激元共振频率设计高反射系数光栅的可能性。
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