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首页> 外文期刊>The Journal of Chemical Physics >Femtosecond primary events in bacteriorhodopsin and its retinal modified analogs:Revision of commonly accepted interpretation of electronic spectra of transient intermediates in the bacteriorhodopsin photocycle
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Femtosecond primary events in bacteriorhodopsin and its retinal modified analogs:Revision of commonly accepted interpretation of electronic spectra of transient intermediates in the bacteriorhodopsin photocycle

机译:细菌视紫红质及其视网膜修饰类似物的飞秒原发性事件:细菌视紫红质光周期中瞬态中间体电子光谱的公认解释的修订

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摘要

Femtosecond primary events in bacteriorhodopsin (BR) and its retinal modified analogs are discussed.Ultrafast time resolved electronic spectra of the primary intermediates induced in the BR photocycle are discussed along with spectral and kinetic inconsistencies of the previous models proposed in the literature.The theoretical model proposed in this paper based on vibrational coupling between the electronic transition of the chromophore and intramolecular vibrational modes allows us to calculate the equilibrium electronic absorption band shape and the hole burning profiles.The model is able to rationalize the complex pattern of behavior for the primary events in BR and explain the origin of the apparent inconsistencies between the experiment and the previous theoretical models.The model presented in the paper is based on the anharmonic coupling assumption in the adiabatic approximation using the canonical transformation method for diagonalization of the vibrational Hamiltonian instead of the commonly used perturbation theory.The electronic transition occurs between the Born-Oppenheimer potential energy surfaces with the electron involved in the transition being coupled to the intramolecular vibrational modes of the molecule (chromophore).The relaxation of the excited state occurs by indirect damping (dephasing) mechanisms.The indirect dephasing is governed by the time evolution of the anharmonic coupling constant driven by the resonance energy exchange between the intramolecular vibrational mode and the bath.The coupling with the intramolecular vibrational modes results in the Franck-Condon progression of bands that are broadened due to the vibrational dephasing mechanisms.The electronic absorption line shape has been calculated based on the linear response theory whereas the third order nonlinear response functions have been used to analyze the hole burning profiles obtained from the pump-probe time-resolved measurements.The theoretical treatment proposed in this paper provides a basis for a substantial revision of the commonly accepted interpretation of the primary events in the BR photocycle that exists in the literature.
机译:讨论了细菌视紫红质(BR)及其视网膜修饰类似物中的飞秒原发事件。讨论了BR光循环中诱导的主要中间体的超快分辨电子光谱以及文献中先前模型的光谱和动力学不一致情况。本文基于生色团的电子跃迁与分子内振动模式之间的振动耦合提出的理论,使我们能够计算出平衡的电子吸收带形状和空穴燃烧轮廓,该模型能够合理化主要事件的复杂行为模式本文中提出的模型基于绝热近似中的非谐耦合假设,使用规范化的变换方法对振动哈密顿量进行对角线化。电子跃迁发生在Born-Oppenheimer势能表面之间,跃迁中涉及的电子与分子(生色团)的分子内振动模式耦合,激发态的弛豫通过间接阻尼发生(相移)机制间接相移是由分子内振动模式与镀液之间的共振能量交换驱动的非谐耦合常数的时间演化决定的,与分子内振动模式的耦合导致谱带的Franck-Condon演化。根据线性移相机制扩大了电子吸收线的形状,而基于线性响应理论计算了电子吸收线的形状,而使用三阶非线性响应函数来分析由泵探针时间分辨测量获得的孔燃烧曲线本章提出的理论处理aper为文献中存在的BR光循环中主要事件的普遍接受的解释的实质性修订提供了基础。

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