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Single Molecule Fluorescence Spectroscopy of PSI Trimers from Arthrospira platensis: A Computational Approach

机译:拟南芥PSI三聚体的单分子荧光光谱:一种计算方法

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摘要

Based on single molecule spectroscopy analysis and our preliminary theoretical studies, the linear and fluorescence spectra of the PSI trimer from Arthrospira platensis with different realizations of the static disorder were modeled at cryogenic temperature. Considering the previously calculated spectral density of chlorophyll, an exciton model for the PSI monomer and trimer including the red antenna states was developed taking into account the supposed similarity of PSI antenna structures from Thermosynechococcus e., Synechocystis sp. PCC6803, and Arthrospira platensis. The red Chls in the PSI monomer were assumed to be in the nearest proximity of the reaction center. The PSI trimer model allowed the simulation of experimentally measured zero phonon line distribution of the red states considering a weak electron-phonon coupling for the antenna exciton states. However, the broad absorption and fluorescence spectra of an individual emitter at 760 nm were calculated by adjusting the Huang-Rhys factors of the chlorophyll lower phonon modes assuming strong electron-phonon coupling.
机译:基于单分子光谱分析和我们初步的理论研究,在低温下对不同节律性静电障碍实现的Arthrospira platensis PSI三聚体的线性和荧光光谱进行了建模。考虑到先前计算的叶绿素的光谱密度,考虑到拟南芥球菌(Synechochocystis sp。)的PSI天线结构的假定相似性,开发了包括红色天线状态的PSI单体和三聚体的激子模型。 PCC6803和Arthrospira platensis。假定PSI单体中的红色Chls位于反应中心附近。考虑到天线激子状态的弱电子-声子耦合,PSI三聚体模型允许对红色状态的实验测量的零声子线分布进行仿真。但是,通过调节假定强电子-声子耦合的叶绿素低声子模式的Huang-Rhys因子,可以计算出单个发射体在760 nm处的宽吸收光谱和荧光光谱。

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