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A novel approach to probe the presence of correlation in energetic disorder: A theoretical study

机译:探索高能障碍中相关性存在的新方法:理论研究

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Fluorescence spectra are used to study exciton spectral dynamics, resulting from hopping of excitons over localized states in one-dimensional systems of chromophores with correlated disorder. The complexity of exciton relaxation which is a direct consequence of the interplay of localization, intra-band or intra-segment relaxation and radiative relaxation of excitons is theoretically studied using a master equation. We show that in the case of resonant excitation the exciton spectral dynamics strongly depends on the presence of intermolecular correlation in the static disorder. We predict that the fluorescence with narrow band excitation could be used as an alternative tool to reveal the presence of the intermolecular correlation.
机译:荧光光谱用于研究激子光谱动力学,这是由于激子在具有相关病症的一维生色团系统中在局部状态上跃迁所致。激子弛豫的复杂性是由激子的定位,带内或段内弛豫和辐射弛豫的相互作用直接导致的,理论上是使用一个主方程进行研究的。我们表明,在共振激发的情况下,激子光谱动力学强烈取决于静态障碍中分子间相关性的存在。我们预测具有窄带激发的荧光可以用作揭示分子间相关性存在的替代工具。

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