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Direct observation of exciton–exciton interactions

机译:直接观察激子-激子相互作用

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摘要

Natural light harvesting as well as optoelectronic and photovoltaic devices depend on efficient transport of energy following photoexcitation. Using common spectroscopic methods, however, it is challenging to discriminate one-exciton dynamics from multi-exciton interactions that arise when more than one excitation is present in the system. Here we introduce a coherent two-dimensional spectroscopic method that provides a signal only in case that the presence of one exciton influences the behavior of another one. Exemplarily, we monitor exciton diffusion by annihilation in a perylene bisimide-based J-aggregate. We determine quantitatively the exciton diffusion constant from exciton–exciton-interaction 2D spectra and reconstruct the annihilation-free dynamics for large pump powers. The latter enables for ultrafast spectroscopy at much higher intensities than conventionally possible and thus improves signal-to-noise ratios for multichromophore systems; the former recovers spatio–temporal dynamics for a broad range of phenomena in which exciton interactions are present.
机译:自然光收集以及光电和光伏设备取决于光激发后能量的有效传输。然而,使用普通的光谱方法,将一个激子动力学与当系统中存在多个激发时出现的多激子相互作用区分开来是一个挑战。在这里,我们介绍了一种相干二维光谱方法,该方法仅在一种激子的存在影响另一种激子的行为的情况下才提供信号。示例性地,我们通过per灭基于sim双酰亚胺的J-聚集体来监测激子扩散。我们从激子-激子相互作用的二维光谱中定量地确定了激子扩散常数,并为大泵浦功率重建了无dynamic灭的动力学。后者使得超快光谱能够以比常规方法更高的强度进行,从而提高了多发色团系统的信噪比。前者恢复了存在激子相互作用的各种现象的时空动力学。

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