首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Electronic resonance with anticorrelated pigment vibrations drives photosynthetic energy transfer outside the adiabatic framework
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Electronic resonance with anticorrelated pigment vibrations drives photosynthetic energy transfer outside the adiabatic framework

机译:具有反相关颜料振动的电子共振将光合能量转移到绝热框架之外

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摘要

The delocalized, anticorrelated component of pigment vibrations can drive nonadiabatic electronic energy transfer in photosynthetic light-harvesting antennas. In femtosecond experiments, this energy transfer mechanism leads to excitation of delocalized, anticorrelated vibrational wavepackets on the ground electronic state that exhibit not only 2D spectroscopic signatures attributed to electronic coherence and oscillatory quantum energy transport but also a cross-peak asymmetry not previously explained by theory. A number of antennas have electronic energy gaps matching a pigment vibrational frequency with a small vibrational coordinate change on electronic excitation. Such photosynthetic energy transfer steps resemble molecular internal conversion through a nested intermolecular funnel.
机译:色素振动的离域的,反相关的分量可以驱动光合光收集天线中的非绝热电子能量转移。在飞秒实验中,这种能量传递机制导致激发了电子态离域的,反相关的振动波包,这些波包不仅表现出归因于电子相干性和振荡量子能量传输的2D光谱特征,而且还表现出理论上未曾解释的跨峰不对称性。许多天线具有电子能隙,该电子能隙与颜料振动频率相匹配,而电子激发时振动坐标变化较小。这种光合作用的能量转移步骤类似于通过嵌套的分子间漏斗进行的分子内部转化。

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