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Regimes of exciton transport in molecular crystals in the presence of dynamic disorder

机译:存在动态障碍时分子晶体中的激子输运制度

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摘要

Thermal motions in molecular crystals cause substantial fluctuation of the excitonic coupling between neighboring molecules (dynamic disorder). The effect of such fluctuation on the exciton dynamics in two limiting cases is explored here, exemplified by the crystals of anthracene and a heteropentacene derivative. When the excitonic coupling is small in comparison with the electron–phonon coupling, the exciton diffusion is incoherent and the inclusion of excitonic coupling fluctuation does not alter the exciton physics but can improve the agreement between computed and experimental diffusion coefficients. For large excitonic couplings, when the transport becomes coherent, the thermal motions determine the diffusivity of the exciton, which can be several orders of magnitude larger than in the incoherent case. The coherent regime is less frequent but potentially of great technological importance.
机译:分子晶体中的热运动会导致相邻分子之间的激子耦合发生大幅波动(动态紊乱)。本文探讨了在两种极限情况下这种波动对激子动力学的影响,以蒽和杂并五苯衍生物的晶体为例。当激子耦合比电子-声子耦合小时,激子扩散是非相干的,并且激子耦合波动的包含不会改变激子物理性质,但可以改善计算扩散系数和实验扩散系数之间的一致性。对于大型激子耦合,当传输线变得连贯时,热运动决定了激子的扩散率,与不相干的情况相比,它可能大几个数量级。连贯的制度虽然不那么频繁,但可能具有很大的技术重要性。

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