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首页> 外文期刊>The Journal of Chemical Physics >Towards quantification of vibronic coupling in photosynthetic antenna complexes
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Towards quantification of vibronic coupling in photosynthetic antenna complexes

机译:定量光合天线复合物中的振动耦合

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Photosynthetic antenna complexes harvest sunlight and efficiently transport energy to the reaction center where charge separation powers biochemical energy storage. The discovery of existence of long lived quantum coherence during energy transfer has sparked the discussion on the role of quantum coherence on the energy transfer efficiency. Early works assigned observed coherences to electronic states, and theoretical studies showed that electronic coherences could affect energy transfer efficiency-by either enhancing or suppressing transfer. However, the nature of coherences has been fiercely debated as coherences only report the energy gap between the states that generate coherence signals. Recent works have suggested that either the coherences observed in photosynthetic antenna complexes arise from vibrational wave packets on the ground state or, alternatively, coherences arise from mixed electronic and vibrational states. Understanding origin of coherences is important for designing molecules for efficient light harvesting. Here, we give a direct experimental observation from a mutant of LH2, which does not have B800 chromophores, to distinguish between electronic, vibrational, and vibronic coherence. We also present a minimal theoretical model to characterize the coherences both in the two limiting cases of purely vibrational and purely electronic coherence as well as in the intermediate, vibronic regime. (C) 2015 AIP Publishing LLC.
机译:光合天线复合物收集阳光并将能量有效地传输到反应中心,在此电荷分离为生化能量存储提供动力。在能量转移过程中存在长寿命量子相干的发现引发了关于量子相干对能量转移效率的作用的讨论。早期的工作将观测到的相干分配给了电子状态,理论研究表明,电子相干可以通过增强或抑制传输来影响能量传输效率。然而,相干的性质已被激烈争论,因为相干仅报告生成相干信号的状态之间的能隙。最近的工作表明,在光合天线复合物中观察到的相干性是由于基态上的振动波包引起的,或者相干性是由电子和振动态的混合引起的。了解相干的起源对于设计分子以进行有效的光收集非常重要。在这里,我们从不具有B800发色团的LH2突变体中进行直接实验观察,以区分电子,振动和振动相干性。我们还提出了一个最小的理论模型,以描述纯振动和纯电子相干的两种极限情况以及中间,振动状态下的相干性。 (C)2015 AIP Publishing LLC。

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