论文标题

单壁碳纳米管中极地介导的Biexciton过渡的证据

Evidence for Polariton-Mediated Biexciton Transition in Single-Walled Carbon Nanotubes

论文作者

Lüttgens, Jan M., Kuang, Zhuoran, Zorn, Nicolas F., Buckup, Tiago, Zaumseil, Jana

论文摘要

与未偶联的发射极相比,具有修改的能量景观的激子 - 孔子与空腔的强耦合产生了具有改良的能量景观的激子。但是,由于所谓的明亮极化状态的飞秒生命周期以及激发下腔反射率的瞬态变化,直接测量极化态激发态动力学是一项挑战。在这里,近红外泵探针光谱法用于研究基于金属粘合微腔中强耦合(6,5)的单壁碳纳米管的激子 - 摩尔龙的超快动力学。我们提出了一种使用遗传算法辅助转移矩阵模拟来拟合腔体反射率相关响应的方案。使用这种方法,可以在瞬态传输数据中识别吸收性激子 - 果棒特征。该功能立即出现在上极化子的共振激发下,但延迟以进行异抗激发。观察到的过渡能量和失谐依赖性指向直接极性向Biexciton转变。我们的结果为强耦合微腔内的光明polariton寿命以外的激子固有过渡提供了直接证据。

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 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.

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