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Coupling Single Giant Nanocrystal Quantum Dots to the Fundamental Mode of Patch Nanoantennas through Fringe Field

机译:通过边缘场将单个巨型纳米晶体量子点耦合到贴片纳米天线的基本模式。

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摘要

Through single dot spectroscopy and numerical simulation studies, we demonstrate that the fundamental mode of gold patch nanoantennas have fringe-field resonance capable of enhancing the nano-emitters coupled around the edge of the patch antenna. This fringe-field coupling is used to enhance the radiative rates of core/thick-shell nanocrystal quantum dots (g-NQDs) that cannot be embedded into the ultra-thin dielectric gap of patch nanoantennas due to their large sizes. We attain 14 and 3 times enhancements in single exciton radiative decay rate and bi-exciton emission efficiencies of g-NQDs respectively, with no detectable metal quenching. Our numerical studies confirmed our experimental results and further reveal that patch nanoantennas can provide strong emission enhancement for dipoles lying not only in radial direction of the circular patches but also in the direction normal to the antennas surface. This provides a distinct advantage over the parallel gap-bar antennas that can provide enhancement only for the dipoles oriented across the gap.
机译:通过单点光谱和数值模拟研究,我们证明了金贴片纳米天线的基本模式具有边缘场共振,能够增强耦合在贴片天线边缘周围的纳米发射器。此边缘场耦合用于增强由于大尺寸而无法嵌入超薄纳米天线间隙的核/厚壳纳米晶体量子点(g-NQD)的辐射速率。我们在g-NQD的单激子辐射衰减率和双激子发射效率上分别提高了14和3倍,而没有可检测到的金属淬灭。我们的数值研究证实了我们的实验结果,并进一步揭示了贴片纳米天线不仅可以在圆形贴片的径向上而且在垂直于天线表面的方向上为偶极子提供强大的发射增强。与平行的缝隙-条天线相比,这提供了明显的优势,后者只能为跨缝隙定向的偶极子提供增强。

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