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Enhanced detection sensitivity of higher-order vibrational modes of gold nanodisks on top of a GaN nanorod array through localized surface plasmons

机译:通过局部表面等离子体激元提高了GaN纳米棒阵列上方金纳米盘的高阶振动模式的检测灵敏度

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摘要

We report a method that enables the excitation of localized surface plasmons (LSPs) in a gold nanodisk array by placing each nanodisk on top of a GaN nanorod. When the rod length was much longer than the plasmon penetration depth inside the nanorod, the plasmonic field was found to be localized, and coupling between neighboring gold nanodisks was eliminated. The interaction between LSPs and acoustic vibrations in gold nanodisks was then investigated. Owing to the strong localization of the plasmonic field, weak, higher-order vibrational modes of gold nanodisk could be optically observed. Furthermore, such an LSP-based acoustic sensor could be operated at any angle of incident light. Our study not only provides an approach to excite LSPs in high-density metallic arrays, but also opens one of the possible solutions for the development of highly sensitive sub-terahertz hypersonic sensors with high angle tolerance of incident light.
机译:我们报告了一种方法,该方法通过将每个纳米磁盘置于GaN纳米棒的顶部,从而能够激发金纳米磁盘阵列中的局部表面等离子体激元(LSP)。当棒的长度比纳米棒内部的等离激元穿透深度长得多时,发现等离子场是局部的,并且消除了相邻的金纳米盘之间的耦合。然后研究了金纳米盘中LSP与声振动之间的相互作用。由于等离子体场的强定位,可以光学观察到金纳米盘的弱,高阶振动模式。此外,这种基于LSP的声传感器可以在任何入射光角度下运行。我们的研究不仅提供了一种在高密度金属阵列中激发LSP的方法,而且为开发具有高入射角耐受性的高灵敏度亚太赫兹高超声速传感器提供了可能的解决方案之一。

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