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Predicting The Linear Optical Response Of J-aggregate Microcavity Exciton-polariton Devices

机译:预测J聚集微腔激子极化器件的线性光学响应

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摘要

We demonstrate that linear dispersion theory accurately predicts the linear optical response of strongly coupled microcavity exciton-polariton devices containing thin films of J aggregates of the cyanine dye [5,6-dichloro-2-[3-[5,6-dichloro-1 -ethyl-3-(3-sulfopropyl)-2(3H)-benzimidazolidene]-1 -propenyl]-1 -ethyl-3-(3-sul-fopropyl) benzimidazolium hydroxide, inner salt, sodium salt] (TDBC) when a spectrally resolved complex index of refraction derived by model-free quasi-Kramers-Kronig regression is used for the J-aggregate thin film. We show that the Rabi splitting can be finely tuned through the J-aggregate film thickness, and we estimate that the minimum linewidth of lower branch exciton polaritons at room temperature in TDBC J-aggregate-based structures is 8.4 meV.
机译:我们证明线性色散理论准确地预测包含菁染料[5,6-dichloro-2- [3- [5,6-dichloro-1] J聚集体薄膜的强耦合微腔激子-极化子器件的线性光学响应-乙基-3-(3-磺丙基)-2(3H)-苯并咪唑啉] -1-丙烯基] -1-乙基-3-(3-磺基-丙基)氢氧化苯并咪唑盐,内盐,钠盐](TDBC)当通过无模型的准Kramers-Kronig回归得到的光谱分辨的复杂折射率被用于J聚合薄膜。我们显示可以通过J聚集体的膜厚度来微调Rabi分裂,并且我们估计在室温下基于TDBC J聚集体的结构中较低支化激子极化子的最小线宽为8.4 meV。

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