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Efficient energy exchange between plasmon and cavity modes via Rabi-analogue splitting in a hybrid plasmonic nanocavity

机译:通过混合等离激元纳米腔中的拉比模拟分裂实现等离激元和腔模之间的有效能量交换

摘要

Plasmonic analogues of Rabi-splitting have been extensively studied in various metallic nanosystems hybridized with semiconductor quantum dots, nanocrystals and organic molecules, with a focus on the splitting energy gap where surface plasmon polaritons (SPPs) strongly couple with excitons. Similar strong coupling also occurs for individual metallic nanoparticles locating inside a photonic microcavity or nearby a waveguide due to the strong interaction between localized surface plasmons and photonic modes in the near-infrared wavelength range. In this work we study experimentally and theoretically the strong coupling between propagating SPPs and the Fabry-Perot (F-P) cavity mode in a metallic nanoparticle array-nanocavity hybrid system in the visible spectral range. The strong modal hybridization created giant modal anti-crossing which can be considered as the classical phenomenon of Rabi splitting i.e. a Rabi-analogue. In addition to the observation of a giant Rabi-analogue splitting energy of 148 meV at the strong coupling regime, we also reveal highly-efficient energy exchange between SPP and F-P modes at the low frequency dispersion branch through detailed numerical near-field studies and experimental phase delay analysis. The observed efficient mode conversion in the investigated plasmonic nanocavity is useful for designing novel nanophotonic devices, in which conventional photonic components need to be integrated with miniaturized plasmonic devices or vice versa.
机译:在与半导体量子点,纳米晶体和有机分子杂化的各种金属纳米系统中,已对拉比分裂的等离激元类似物进行了广泛的研究,重点研究了表面等离振子极化子(SPP)与激子强烈耦合的分裂能隙。由于局部表面等离子体激元和近红外波长范围内的光子模式之间的强相互作用,位于光子微腔内部或波导附近的单个金属纳米粒子也会发生类似的强耦合。在这项工作中,我们通过实验和理论研究在可见光谱范围内的金属纳米粒子阵列-纳米腔混合系统中,传播的SPP与Fabry-Perot(F-P)腔模之间的强耦合。强烈的模态杂交产生了巨大的模态反杂交,其可以被认为是拉比分裂的经典现象,即拉比类似物。除了在强耦合状态下观察到148 meV的巨大拉比模拟分裂能外,我们还通过详细的数值近场研究和实验揭示了低频色散分支处SPP和FP模式之间的高效能量交换。相位延迟分析。在研究的等离子体纳米腔中观察到的有效模式转换可用于设计新型纳米光子器件,其中常规的光子组件需要与小型化的等离子体器件集成在一起,反之亦然。

著录项

  • 作者

    Chen S; Li G; Lei D; Cheah KW;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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