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Resolving vibrational from electronic coherences in two-dimensional electronic spectroscopy: The role of the laser spectrum

机译:在二维电子光谱学中解决电子相干的振动:激光光谱的作用

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摘要

The observation of coherent quantum effects in photosynthetic light-harvesting complexes prompted the question whether quantum coherence could be exploited to improve the efficiency in new energy materials. The detailed characterization of coherent effects relies on sensitive methods such as two-dimensional electronic spectroscopy (2D-ES). However, the interpretation of the results produced by 2D-ES is challenging due to the many possible couplings present in complex molecular structures. In this work, we demonstrate how the laser spectral profile can induce electronic coherence-like signals in monomeric chromophores, potentially leading to data misinterpretation. We argue that the laser spectrum acts as a filter for certain coherence pathways and thus propose a general method to differentiate vibrational from electronic coherences.
机译:在光合光捕获络合物中相干量子效应的观察提出了一个问题,即是否可以利用量子相干性来提高新能源材料的效率。相干效应的详细表征依赖于灵敏的方法,例如二维电子光谱(2D-ES)。但是,由于复杂分子结构中存在许多可能的偶联,因此对2D-ES产生的结果的解释具有挑战性。在这项工作中,我们演示了激光光谱轮廓如何在单体发色团中诱导类似电子相干的信号,从而可能导致数据误解。我们认为,激光光谱充当某些相干路径的滤波器,因此提出了一种区分振动和电子相干的通用方法。

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