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有纹理的开放金属表面中的局域性赝表面等离子体激元

Localized spoof surface plasmons in textured open metal surfaces.

作者信息

Gao Zhen, Gao Fei, Xu Hongyi, Zhang Youming, Zhang Baile

出版信息

Opt Lett. 2016 May 15;41(10):2181-4. doi: 10.1364/OL.41.002181.

Abstract

We experimentally demonstrate that textured open metal surfaces, i.e., the ultrathin fan-shaped metallic strips, are able to support spoof localized surface plasmons (spoof-LSPs) in the microwave frequencies. Unlike conventional spoof-LSPs supported on textured closed metal surfaces, which originate from the interference of clockwise and counterclockwise propagating surface modes, spoof-LSPs on textured open metal surfaces arise from the Fabry-Perot-like resonances due to the terminations of the open surfaces. We show that both the number of modes and the resonance frequencies of spoof-LSPs on textured open metal surfaces can be engineered through tuning the grating numbers (or total length) of the structured fan-shaped metallic strip. This enables the tuning of the spoof-plasmonic resonator by simply changing its length, rather than the complete geometry, simplifying the design to just one degree of freedom. Experimental evidence of the spoof-LSP Fabry-Perot resonators in the microwave regimes is presented with near-field response spectra and mode profiles imaged directly.

摘要

我们通过实验证明,有纹理的开放金属表面,即超薄扇形金属条,能够在微波频率下支持类表面等离激元局域表面等离子体(类表面等离激元 - LSPs)。与在有纹理的封闭金属表面上支持的传统类表面等离激元 - LSPs不同,传统的类表面等离激元 - LSPs源于顺时针和逆时针传播的表面模式的干涉,而有纹理的开放金属表面上的类表面等离激元 - LSPs则源于开放表面终端的法布里 - 珀罗型共振。我们表明,通过调整结构化扇形金属条的光栅数量(或总长度),可以设计有纹理的开放金属表面上类表面等离激元 - LSPs的模式数量和共振频率。这使得通过简单地改变其长度而不是完整的几何形状来调整类表面等离激元谐振器成为可能,从而将设计简化为仅一个自由度。通过直接成像的近场响应光谱和模式轮廓,给出了微波频段类表面等离激元 - LSPs法布里 - 珀罗谐振器的实验证据。

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