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首页> 外文期刊>The Journal of Chemical Physics >The nature of the low energy band of the Fenna-Matthews-Olson complex: Vibronic signatures
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The nature of the low energy band of the Fenna-Matthews-Olson complex: Vibronic signatures

机译:Fenna-Matthews-Olson复合体低能带的性质:振动特征

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摘要

Based entirely upon actual experimental observations on electron-phonon coupling, we develop a theoretical framework to show that the lowest energy band of the Fenna-Matthews-Olson complex exhibits observable features due to the quantum nature of the vibrational manifolds present in its chromophores. The study of linear spectra provides us with the basis to understand the dynamical features arising from the vibronic structure in nonlinear spectra in a progressive fashion, starting from a microscopic model to finally performing an inhomogeneous average. We show that the discreteness of the vibronic structure can be witnessed by probing the diagonal peaks of the nonlinear spectra by means of a relative phase shift in the waiting time resolved signal. Moreover, we demonstrate that the photon-echo and non-rephasing paths are sensitive to different harmonics in the vibrational manifold when static disorder is taken into account. Supported by analytical and numerical calculations, we show that non-diagonal resonances in the 2D spectra in the waiting time, further capture the discreteness of vibrations through a modulation of the amplitude without any effect in the signal intrinsic frequency. This fact generates a signal that is highly sensitive to correlations in the static disorder of the excitonic energy albeit protected against dephasing due to inhomogeneities of the vibrational ensemble.
机译:完全基于对电子-声子耦合的实际实验观察,我们开发了一个理论框架,表明Fenna-Matthews-Olson复合物的最低能带由于其发色团中存在的振动流形的量子性质而表现出可观察的特征。线性谱的研究为我们提供了从微观模型到最终进行非均匀平均的渐进式理解非线性谱中振动结构产生的动力学特征的基础。我们表明,通过等待时间分辨信号中的相对相移来探测非线性光谱的对角线峰,可以观察到振动结构的离散性。此外,我们证明了当考虑静态无序时,光子回波和非重相路径对振动流形中的不同谐波很敏感。在解析和数值计算的支持下,我们表明,等待时间内二维光谱中的非对角线共振通过调制幅度进一步捕获振动的离散性,而不会对信号固有频率产生任何影响。这一事实产生了一个信号,该信号对激子能量的静态无序中的相关性高度敏感,尽管由于振动集合的不均匀性而受到保护,不会发生退相。

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