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Beating maps of singlet fission: Simulation of coherent two-dimensional electronic spectroscopy by Davydov ansatz in organic molecules

机译:击败单线裂变的地图:达维德·坦斯茨在有机分子中的相干二维电子光谱的仿真

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摘要

The coherent two-dimensional (2D) electronic spectra for both the intra-and inter-molecular singlet fission (SF) processes in organic molecules are simulated by the Davydov ansatz combined with the Frenkel-Dirac time-dependent variational algorithm. By virtue of the dynamical approach, we are able to identify the signals of triplet excitation in the excited-state absorption contribution of the 2D spectra. In order to discuss whether a mediative charge-transfer (CT) state is necessary to SF, we increase the CT-state energy and find, in a theoretical manner, that the beating signal related to the triplet is inhibited. The vibronic coherence is then studied in the beating maps for both the ground and excited states. Except for the normal beating modes adhering to the relevant electronic state, we observe signals that are explicitly related to the triplet excitations. The pathways of transition corresponding to these signals are clarified in the respective Feynman diagram, which can help the experimenters determine the physical origin of relevant measurements. Published by AIP Publishing.
机译:有机分子中的与分子间单次裂变(SF)过程的相干二维(2D)电子光谱由Davydov Ansatz与Frenkel-Dirac时间依赖性变分算法进行模拟。凭借动态方法,我们能够在2D光谱的激发态吸收贡献中识别三重态激发的信号。为了讨论SF是否需要介导电荷转移(CT)状态,我们增加CT状态能量并以理论上找到与三联网相关的跳动信号被抑制。然后在地面和激发态的跳动图中研究了振动相干性。除了遵守相关电子状态的正常跳动模式,我们观察与三联刺激明确相关的信号。在相应的Feynman图中阐明了对应于这些信号的过渡的路径,其可以帮助实验者确定相关测量的物理来源。通过AIP发布发布。

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