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High aspect ratio plasmonic nanostructures for sensing applications

机译:高纵横比的等离激元纳米结构,用于传感应用

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摘要

We present an experimental and theoretical study of plasmonic modes in high aspect ratio nanostructures in the visible wavelength region and demonstrate their high performance for sensing applications. Ordered and well-defined plasmonic structures with various cross-sectional profiles and heights are obtained using a top-down fabrication process. We show that, compared to cylindrical nanorods, structures with split-ring resonator-like cross sections have great potential for powerful sensing due to a pronounced polarization dependence, strong field enhancement, structural tunability, and improved mechanical stability. The plasmonic structures under study exhibit high sensitivities, up to nearly 600 nm/RIU, and figures of merit above 20.
机译:我们提出了在可见光波长区域高纵横比纳米结构中的等离激元模式的实验和理论研究,并展示了其在传感应用中的高性能。使用自上而下的制造工艺可获得具有各种横截面轮廓和高度的有序且轮廓分明的等离激元结构。我们显示,与圆柱形纳米棒相比,具有开口环谐振器状横截面的结构由于明显的偏振依赖性,强大的场增强,结构可调性和改善的机械稳定性而具有强大的传感潜力。研究中的等离激元结构显示出高灵敏度,最高达600 nm / RIU,品质因数超过20。

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