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首页> 外文期刊>Plasmonics >Metallic Nanowire Array-Polymer Hybrid Film for Surface Plasmon Resonance Sensitivity Enhancement and Spectral Range Enlargement
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Metallic Nanowire Array-Polymer Hybrid Film for Surface Plasmon Resonance Sensitivity Enhancement and Spectral Range Enlargement

机译:用于表面等离子体共振灵敏度增强和光谱范围扩大的金属纳米线阵列-聚合物杂化膜

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摘要

In this paper, the coupling interaction is investigated between a metallic nanowire array and a metal film under the Kretschmann condition. The plasmonic multilayer is composed of a metallic nanowire array embedded in a polymer layer positioned above a metal film, exploiting the classical surface plasmon resonance (SPR) configuration. We analyze the influence of various structural parameters of the metallic nanowire array on the SPR spectrum of thin metal film. The results show that the coupling interactions of nanowires with the metal film can greatly affect SPR resonance wavelength and increase SPR sensitivity. The coupling strength of metallic nanowire array and metal film also impacts resonance wavelength, which can be used to adjust SPR range but have little effect on its sensitivity. The results are confirmed using a dipole coupling resonance model of metallic nanowire. We demonstrated that this nanostructured hybrid structure can be used for high sensitivity SPR monitoring in a large spectral range, which is important for advanced SPR measurement including fiber-optic SPR sensing technology.
机译:在本文中,研究了在Kretschmann条件下金属纳米线阵列与金属膜之间的耦合相互作用。等离子体层由嵌入在金属膜上方的聚合物层中的金属纳米线阵列组成,利用了经典的表面等离子体共振(SPR)配置。我们分析了金属纳米线阵列的各种结构参数对金属薄膜SPR光谱的影响。结果表明,纳米线与金属膜的耦合相互作用可以极大地影响SPR共振波长并提高SPR灵敏度。金属纳米线阵列与金属膜的耦合强度也会影响共振波长,可用于调节SPR范围,但对其灵敏度影响很小。使用金属纳米线的偶极耦合共振模型证实了该结果。我们证明了这种纳米结构的混合结构可用于大光谱范围内的高灵敏度SPR监测,这对于包括光纤SPR传感技术在内的高级SPR测量非常重要。

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