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Simultaneous realization of high sensing sensitivity and tunability in plasmonic nanostructures arrays

机译:在等离子体纳米结构阵列中同时实现高感测灵敏度和可调性

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摘要

A plasmonic nanostructure (PNS) which integrates metallic and dielectric media within a single structure has been shown to exhibit specific plasmonic properties which are considered useful in refractive index (RI) sensor applications. In this paper, the simultaneous realization of sensitivity and tunability of the optical properties of PNSs consisting of alternative Ag and dielectric of nanosphereanorod array have been proposed and compared by using three-dimensional finite element method. The proposed system can support plasmonic hybrid modes and the localized surface plasmonic resonances and cavity plasmonic resonances within the individual PNS can be excited by the incident light. The proposed PNSs can be operated as RI sensor with a sensitivity of 500 nm/RIU (RIU = refractive index unit) ranging from UV to the near-infrared. In addition, a narrow bandwidth and nearly zero transmittance along with a high absorptance can be achieved by a denser PNSs configuration in the unit cell of PNS arrays. We have demonstrated the number of modes sustained in the PNS system, as well as, the near-field distribution can be tailored by the dielectric media in PNSs.
机译:已显示将金属和介电介质整合到单个结构中的等离子纳米结构(PNS)具有特定的等离子特性,这些特性被认为可用于折射率(RI)传感器应用。本文提出了同时实现由替代银和纳米球/纳诺德阵列电介质组成的PNSs的光学特性的灵敏度和可调性,并通过三维有限元方法进行了比较。所提出的系统可以支持等离子体混合模式,并且各个PNS内的局部表面等离子体共振和腔等离子体共振可以被入射光激发。所提出的PNS可以作为RI传感器使用,其灵敏度为500 nm / RIU(RIU =折射率单位),范围从紫外线到近红外。另外,通过在PNS阵列的单位单元中配置更密集的PNS,可以实现窄带宽和近零透射率以及高吸收率。我们已经证明了PNS系统中维持的模式数量,以及可以通过PNS中的介电介质定制近场分布。

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