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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Study of resonant modes of a periodic metallic array near a dielectric interface: evanescent-to-propagating coupling via surface plasmon excitation
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Study of resonant modes of a periodic metallic array near a dielectric interface: evanescent-to-propagating coupling via surface plasmon excitation

机译:研究介电界面附近的周期性金属阵列的共振模式:通过表面等离子体激元激发的e逝-传播耦合

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摘要

The structural modes of a 2D periodic array of metallic cylinders near a dielectric interface are studied, for large and small wavelength-to-period ratios. We show that there are two clearly distinguished kinds of resonances: waveguide modes of the gap between the array and the interface, and eigenmode excitations (plasmons). While waveguide modes are present for both polarizations, surface plasmon polaritons (SPPs) only occur for p polarization, and, under particular conditions, this mechanism can produce an efficient coupling (about 60%) between the incident evanescent wave and the eigenmodes Supported by the structure, which produces an enhanced transmitted propagating order. The response of the structure is analysed in detail by varying its relevant parameters, paying particular attention to the interplay between SPPs and Rayleigh anomalies, and its effect on the grating response.
机译:研究了在介电界面附近的金属圆柱体的二维周期阵列的结构模式,适用于大和小的波长周期比。我们显示出两种明显不同的共振:阵列和界面之间的间隙的波导模式以及本征模激发(等离子体激元)。虽然两种极化都存在波导模式,但仅对p极化会发生表面等离振子极化子(SPP),在特定条件下,这种机制可以在入射e逝波与本征模之间产生有效耦合(大约60%)。结构,产生增强的传输传播顺序。通过改变结构的相关参数来详细分析结构的响应,尤其要注意SPP与瑞利异常之间的相互作用以及其对光栅响应的影响。

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