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Manipulating the fluorescence of exciton-plasmon hybrids in the strong coupling regime with dual resonance enhancements

机译:操纵exciton-plasmon的荧光混合动力车与双强耦合机制共振增强

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摘要

Strong couplings between molecular excitons and metal plasmons bring advantages to effectively manipulate the optical properties of hybrid systems, including both absorption and fluorescence. In contrast to absorption behaviours, which have been quite well understood and can be categorized into different regimes such as Fano dip and Rabi splitting, the characteristics of fluorescence in strongly coupled hybrids remain largely unexplored. Quenching instead of the enhancement of fluorescence is usually observed in the corresponding experiments, and a theoretical model to deal with this phenomenon is still lacking. Herein, we demonstrate a largely enhanced fluorescence in a hybrid system with Cy5 dye molecules strongly coupled to Ag nanoparticle films, signified by the huge Rabi splitting absorption spectra. The plexciton Rabi splitting of the hybrids can be tuned from 320 meV to as large as 750 meV by adjusting both plasmon strength and molecular concentration. Moreover, when the excitation and emission wavelengths are respectively tuned to be resonant with the two Rabi peaks, the hybrid acting as a plexcitonic dual resonant antenna exhibits an enhanced fluorescence 44 times larger than that of the free dye molecule. We also develop a theoretical model to simultaneously study the characteristics of both the absorption and emission spectra, including the peak shifting and strength. These findings offer a new strategy to design and fabricate plexcitonic devices with tunable optical responses and efficient fluorescence.
机译:分子之间的强耦合激子有效的金属等离子体带来优势控制混合的光学特性系统,包括吸收和荧光。行为,已被很好理解,可以分为不同的政权如浸法诺和拉比分裂,在强烈荧光的特征耦合的混合动力车在很大程度上仍未知。淬火而不是增强荧光通常是观察到的相应的实验和理论模型来处理这种现象仍在缺乏。增强的荧光与Cy5混合系统染料分子强烈耦合Ag纳米颗粒电影,所指的巨大的拉比分裂吸收光谱。混合动力汽车可以从320伏大750伏通过调整等离子体力量和分子的浓度。当激发和发射波长分别与这两个共振拉比山峰,混合作为plexcitonic双谐振天线展览一个增强荧光的44倍免费的染料分子。模型,同时研究了特征的吸收和发射光谱,包括峰值变化和力量。设计和研究提供一个新的策略制造plexcitonic与可调设备光响应和高效的荧光。

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