等离子体子
光致发光
量子点
塞尔效应
光电子学
光子学
极化子
格子(音乐)
材料科学
联轴节(管道)
自发辐射
量子光学
凝聚态物理
纳米技术
物理
光学
激光器
声学
冶金
作者
Ravindra Kumar Yadav,Marc R. Bourgeois,Charles Cherqui,Xitlali G. Juarez,Weijia Wang,Teri W. Odom,George C. Schatz,J. K. Basu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-05-26
卷期号:14 (6): 7347-7357
被引量:68
标识
DOI:10.1021/acsnano.0c02785
摘要
Colloidal quantum dot (CQD) assemblies exhibit interesting optoelectronic properties when coupled to optical resonators ranging from Purcell-enhanced emission to the emergence of hybrid electronic and photonic polariton states in the weak and strong coupling limits, respectively. Here, experiments exploring the weak-to-strong coupling transition in CQD-plasmonic lattice hybrid devices at room temperature are presented for varying CQD concentrations. To interpret these results, generalized retarded Fano-Anderson and effective medium models are developed. Individual CQDs are found to interact locally with the lattice yielding Purcell-enhanced emission. At high CQD densities, polariton states emerge as two-peak structures in the photoluminescence, with a third polariton peak, due to collective CQD emission, appearing at still higher CQD concentrations. Our results demonstrate that CQD-lattice plasmon devices represent a highly flexible platform for the manipulation of collective spontaneous emission using lattice plasmons, which could find applications in optoelectronics, ultrafast optical switches, and quantum information science.
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