Lüttgens Jan M, Kuang Zhuoran, Zorn Nicolas F, Buckup Tiago, Zaumseil Jana
Institute for Physical Chemistry, Universität Heidelberg, D-69120 Heidelberg, Germany.
Centre for Advanced Materials, Universität Heidelberg, D-69120 Heidelberg, Germany.
ACS Photonics. 2022 May 18;9(5):1567-1576. doi: 10.1021/acsphotonics.1c01590. Epub 2022 May 4.
Strong coupling of excitonic resonances with a cavity gives rise to exciton-polaritons which possess a modified energy landscape compared to the uncoupled emitter. However, due to the femtosecond lifetime of the so-called bright polariton states and transient changes of the cavity reflectivity under excitation, it is challenging to directly measure the polariton excited state dynamics. Here, near-infrared pump-probe spectroscopy is used to investigate the ultrafast dynamics of exciton-polaritons based on strongly coupled (6,5) single-walled carbon nanotubes in metal-clad microcavities. We present a protocol for fitting the reflectivity-associated response of the cavity using genetic algorithm-assisted transfer-matrix simulations. With this approach, we are able to identify an absorptive exciton-polariton feature in the transient transmission data. This feature appears instantaneously under resonant excitation of the upper polariton but is delayed for off-resonant excitation. The observed transition energy and detuning dependence point toward a direct upper polariton-to-biexciton transition. Our results provide direct evidence for exciton-polariton intrinsic transitions beyond the bright polariton lifetime in strongly coupled microcavities.
激子共振与微腔的强耦合产生了激子极化激元,与未耦合的发射体相比,激子极化激元具有改变的能量分布。然而,由于所谓明亮极化激元态的飞秒寿命以及激发下微腔反射率的瞬态变化,直接测量极化激元激发态动力学具有挑战性。在此,利用近红外泵浦 - 探测光谱来研究基于金属包覆微腔中强耦合(6,5)单壁碳纳米管的激子极化激元的超快动力学。我们提出了一种使用遗传算法辅助转移矩阵模拟来拟合微腔反射率相关响应的方法。通过这种方法,我们能够在瞬态透射数据中识别出一个吸收性激子极化激元特征。该特征在高阶极化激元的共振激发下瞬间出现,但在非共振激发下会延迟出现。观察到的跃迁能量和失谐依赖性指向了直接的高阶极化激元到双激子跃迁。我们的结果为强耦合微腔中超出明亮极化激元寿命的激子极化激元本征跃迁提供了直接证据。