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How To Light Special Hot Spots in Multiparticle-Film Configurations

机译:如何在多粒子电影配置中点亮特殊热点

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The precise control over the locations of hot spots in a nanostructured ensemble is of great importance in plasmon-enhanced spectroscopy, chemical sensing, and super-resolution optical imaging. However, for multiparticle configurations over metal films that involve localized and propagating surface plasmon modes, the locations of hot spots are difficult to predict due to complex plasmon competition and synergistic effects. In this work, theoretical simulations based on multiparticle-film configurations predict that the locations of hot spots can be efficiently controlled in the particle-particle gaps, the particle-film junctions, or in both, by suppressing or promoting specific plasmonic coupling effects in specific wavelength ranges. These findings offer an avenue to obtain strong Raman signals from molecules situated on single crystal surfaces and simultaneously avoid signal interference from particle-particle gaps.
机译:在等离激元增强光谱学,化学传感和超分辨率光学成像中,对纳米结构整体中热点位置的精确控制非常重要。但是,对于涉及局部和传播的表面等离激元模式的金属膜上的多粒子配置,由于复杂的等离激元竞争和协同效应,难以预测热点的位置。在这项工作中,基于多颗粒膜结构的理论模拟预测,可以通过抑制或促进特定位置的特定等离激元耦合效应,在颗粒-颗粒间隙,颗粒-膜结或两者中有效控制热点的位置。波长范围。这些发现为从位于单晶表面上的分子获得强拉曼信号提供了途径,同时避免了来自粒子-粒子间隙的信号干扰。

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