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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Low-frequency surface-plasmon resonances in planar metal-dielectric periodic structures
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Low-frequency surface-plasmon resonances in planar metal-dielectric periodic structures

机译:平面金属-介电周期性结构中的低频表面等离子体共振

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摘要

As a part of nanophotonics, surface-plasmon resonance is examined for a periodic semi-infinite structure with metal-dielectric unit cells in slab geometry. The electromagnetic waves through this structure are analyzed in the low-frequency limit with respect to the bulk plasma frequency of metal. The lossless Drude model is employed throughout the present paper for mathematical simplicity. As a consequence, a distinguished balance is found to exist, where the similarity parameter is formed from an appropriate combination of the filling fraction of the metallic sublayers and the frequency. Interesting nanophotonic behaviors are thus identified by comparing various characteristics such as the frequency bandgaps, cutoff thicknesses, substrate effects, acoustic and optical modes, and group-velocity dispersions.
机译:作为纳米光子学的一部分,检查表面等离子共振的周期性半无限结构,其平板形状具有金属介电单元。相对于金属的整体等离子体频率,在低频范围内分析了通过这种结构的电磁波。为了简化数学,在整个本文中采用了无损Drude模型。结果,发现存在显着的平衡,其中由金属子层的填充率和频率的适当组合形成相似性参数。因此,通过比较各种特性(例如,带隙,截止厚度,基板效应,声和光学模式以及群速度色散),可以识别出有趣的纳米光子行为。

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