Chang Woo Je, Zeng Hongfei, Terry Weatherly Connor K, Provazza Justin, Liu Pufan, Weiss Emily A, Stern Nathaniel P, Tempelaar Roel
Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208-3113, United States.
Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60208-3113, United States.
ACS Nano. 2024 Jul 23. doi: 10.1021/acsnano.4c03545.
The recent surge of interest in polaritons has prompted fundamental questions about the role of dark states in strong light-matter coupling phenomena. Here, we systematically vary the relative number of dark states by controlling the number of stacked CdSe nanoplatelets confined in a Fabry-Pérot cavity. We find the emission spectrum to change significantly with an increasing number of nanoplatelets, with a gradual shift of the dominant emission intensity from the lower polariton branch to a manifold of dark states. Through accompanying calculations based on a kinetic model, this shift is rationalized by an entropic trapping of excitations by the dark state manifold, while a weak dark state dispersion due to local disorder explains their nonzero emission. Our results point toward the relevance of the dark state concentration to the optical and dynamical properties of cavity-embedded quantum emitters with ramifications for Bose-Einstein condensate formation, polariton lasing, polariton-based quantum transduction schemes, and polariton chemistry.
近期对极化激元的兴趣激增,引发了关于暗态在强光-物质耦合现象中作用的基本问题。在此,我们通过控制限制在法布里-珀罗腔中的堆叠CdSe纳米片的数量,系统地改变暗态的相对数量。我们发现,随着纳米片数量的增加,发射光谱发生显著变化,主导发射强度从较低极化激元分支逐渐转移到一系列暗态。通过基于动力学模型的伴随计算,这种转移可通过暗态流形对激发的熵捕获来解释,而由于局部无序导致的弱暗态色散则解释了它们的非零发射。我们的结果表明暗态浓度与腔嵌入量子发射器的光学和动力学性质相关,这对玻色-爱因斯坦凝聚体形成、极化激元激光、基于极化激元的量子转导方案以及极化激元化学具有重要意义。