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硅/WS/Au纳米腔中等离激元-激子-三重态耦合的光学引入与调控

Optical Introduction and Manipulation of Plasmon-Exciton-Trion Coupling in a Si/WS/Au Nanocavity.

作者信息

Liu Shimei, Deng Fu, Zhuang Weijie, He Xiaobing, Huang Hongxin, Chen Jing-Dong, Pang Huajian, Lan Sheng

机构信息

Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices, School of Information and Optoelectronic Science and Engineering, South China Normal University, Guangzhou 510006, China.

Department of Physics, The Hong Kong University of Science and Technology, Kowloon, Hong Kong, China.

出版信息

ACS Nano. 2022 Sep 27;16(9):14390-14401. doi: 10.1021/acsnano.2c04721. Epub 2022 Sep 6.

Abstract

Strong plasmon-exciton coupling, which has potential applications in nanophotonics, plasmonics, and quantum electrodynamics, has been successfully demonstrated by using metallic nanocavities and two-dimensional materials. Dynamical control of plasmon-exciton coupling strength, especially by using optical methods, remains a big challenge although it is highly desirable. Here, we report the optical introduction and manipulation of plasmon-exciton-trion coupling realized in a dielectric-metal hybrid nanocavity, which is composed of a silicon (Si) nanoparticle and a thin gold (Au) film, with an embedded tungsten disulfide (WS) monolayer. We employ scattering and photoluminescence spectra to characterize the coupling strength between plasmons and excitons in Si/WS/Au nanocavities constructed by using Si nanoparticles with different diameters. We enhance the plasmon-exciton and plasmon-trion coupling strength by injecting excitons and trions into the WS monolayer with a 488 nm laser beam. It is revealed that the emission intensities of excitons and trions with respect to the reference WS monolayer can be modified through the change in the coupling strength induced by the laser light. Interestingly, the coupling strength between the plasmons and the excitons/trions can be manipulated from weak to strong coupling regime by simply increasing the laser power, which is clearly resolved in the scattering spectra of Si/WS/Au nanocavities. More importantly, the plasmon-exciton-trion coupling induced by the laser light is confirmed by the energy exchange between excitons and trions. Our findings indicate the possibility for optically manipulating plasmon-exciton interaction and suggest the practical applications of dielectric-metal hybrid nanocavities in nanoscale plasmonic devices.

摘要

强等离子体激元 - 激子耦合在纳米光子学、等离子体学和量子电动力学中具有潜在应用,通过使用金属纳米腔和二维材料已成功得到证实。尽管对等离子体激元 - 激子耦合强度进行动态控制(尤其是通过光学方法)非常令人期待,但仍然是一个巨大的挑战。在此,我们报告了在一种介电 - 金属混合纳米腔中实现的等离子体激元 - 激子 - 三重态耦合的光学引入和操控,该纳米腔由一个硅(Si)纳米颗粒和一层薄金(Au)膜组成,并嵌入了单层二硫化钨(WS)。我们利用散射光谱和光致发光光谱来表征由不同直径的Si纳米颗粒构建的Si/WS/Au纳米腔中等离子体激元和激子之间的耦合强度。我们通过用488 nm激光束向WS单层注入激子和三重态来增强等离子体激元 - 激子和等离子体激元 - 三重态耦合强度。结果表明,相对于参考WS单层,激子和三重态的发射强度可通过激光诱导的耦合强度变化来改变。有趣的是,通过简单增加激光功率,等离子体激元和激子/三重态之间的耦合强度可以从弱耦合 regime 调节到强耦合 regime,这在Si/WS/Au纳米腔的散射光谱中清晰可见。更重要的是,激子和三重态之间的能量交换证实了激光诱导的等离子体激元 - 激子 - 三重态耦合。我们的发现表明了光学操控等离子体激元 - 激子相互作用的可能性,并暗示了介电 - 金属混合纳米腔在纳米级等离子体器件中的实际应用。

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