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Primary Charge Separation in the Photosystem II Reaction Center Revealed by a Global Analysis of the Two-dimensional Electronic Spectra

机译:二维电子光谱的全局分析揭示了光系统II反应中心中的主电荷分离

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摘要

The transfer of electronic charge in the reaction center of Photosystem II is one of the key building blocks of the conversion of sunlight energy into chemical energy within the cascade of the photosynthetic reactions. Since the charge transfer dynamics is mixed with the energy transfer dynamics, an effective tool for the direct resolution of charge separation in the reaction center is still missing. Here, we use experimental two-dimensional optical photon echo spectroscopy in combination with the theoretical calculation to resolve its signature. A global fitting analysis allows us to clearly and directly identify a decay pathway associated to the primary charge separation. In particular, it can be distinguished from regular energy transfer and occurs on a time scale of 1.5 ps under ambient conditions. This technique provides a general tool to identify charge separation signatures from the energy transport in two-dimensional optical spectroscopy.
机译:在Photosystem II的反应中心中,电荷的转移是在光合作用级联中将太阳光能转换为化学能的关键组成部分之一。由于电荷转移动力学与能量转移动力学混合在一起,因此仍然缺少用于直接解决反应中心电荷分离的有效工具。在这里,我们使用实验性二维光学光子回波光谱结合理论计算来解决其特征。全局拟合分析使我们能够清楚,直接地识别与一次电荷分离相关的衰减路径。特别是,它可以与常规的能量传输区分开,并且在环境条件下以1.5 ps的时间尺度发生。此技术提供了一种通用工具,可从二维光谱学中的能量传输中识别出电荷分离特征。

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