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Silver Nanoshell Plasmonically Controlled Emission of Semiconductor Quantum Dots in the Strong Coupling Regime

机译:在强耦合体系中,银纳米壳的等离子体量子控制半导体量子点的发射。

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摘要

Strong coupling between semiconductor excitons and localized surface plasmons (LSPs) giving rise to hybridized plexciton states in which energy is coherently and reversibly exchanged between the components is vital, especially in the area of quantum information processing from fundamental and practical points of view. Here, in photoluminescence spectra, rather than from common extinction or reflection measurements, we report on the direct observation of Rabi splitting of approximately 160 meV as an indication of strong coupling between excited states of CdSe/ZnS quantum dots (QDs) and LSP modes of silver nanoshells under nonresonant nanosecond pulsed laser excitation at room temperature. The strong coupling manifests itself as an anticrossing-like behavior of the two newly formed polaritons when tuning the silver nanoshell plasmon energies across the exciton line of the QDs. Further analysis substantiates the essentiality of high pump energy and collective strong coupling of many QDs with the radiative dipole mode of the metallic nanoparticles for the realization of strong coupling. Our finding opens up interesting directions for the investigation of strong coupling between LSPs and excitons from the perspective of radiative recombination under easily accessible experimental conditions.
机译:半导体激子与局部表面等离激元(LSP)之间的强耦合会产生杂化态,在杂化态中能量在各个成分之间相干可逆地交换是至关重要的,尤其是从基本和实际的角度来看,在量子信息处理领域。在这里,我们在光致发光光谱中,而不是从常见的消光或反射测量中,报告直接观察到约160 meV的拉比分裂,这表明CdSe / ZnS量子点(QDs)的激发态与LSP的LSP模式之间存在强耦合。室温下,在非共振纳秒脉冲激光激发下形成银纳米壳。在跨量子点的激子线调节银纳米壳等离激元能量时,强耦合表现为两个新形成的极化子的反交叉样行为。进一步的分析证实了高泵浦能量和许多QD集体强耦合与金属纳米粒子的辐射偶极子模式实现强耦合的必要性。我们的发现为在易于接近的实验条件下从辐射复合的角度研究LSP与激子之间的强耦合开辟了有趣的方向。

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