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Origin of long-lived oscillations in 2D-spectra of a quantum vibronic model: Electronic versus vibrational coherence

机译:量子振动模型二维光谱中长寿命振荡的起源:电子与振动相干性

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摘要

We demonstrate that the coupling of excitonic and vibrational motion in biological complexes can provide mechanisms to explain the long-lived oscillations that have been obtained in nonlinear spectroscopic signals of different photosynthetic pigment protein complexes and we discuss the contributions of excitonic versus purely vibrational components to these oscillatory features. Considering a dimer model coupled to a structured spectral density we exemplify the fundamental aspects of the electron-phonon dynamics, and by analyzing separately the different contributions to the nonlinear signal, we show that for realistic parameter regimes purely electronic coherence is of the same order as purely vibrational coherence in the electronic ground state. Moreover, we demonstrate how the latter relies upon the excitonic interaction to manifest. These results link recently proposed microscopic, non-equilibrium mechanisms to support long lived coherence at ambient temperatures with actual experimental observations of oscillatory behaviour using 2D photon echo techniques to corroborate the fundamental importance of the interplay of electronic and vibrational degrees of freedom in the dynamics of light harvesting aggregates.
机译:我们证明了生物复合物中激子和振动运动的耦合可以提供机制来解释在不同光合色素蛋白复合物的非线性光谱信号中获得的长寿命振荡,并且我们讨论了激子与纯振动组分对这些化合物的贡献振荡特征。考虑到与结构化频谱密度耦合的二聚体模型,我们举例说明了电子-声子动力学的基本方面,并且通过分别分析对非线性信号的不同贡献,我们表明,对于现实的参数体系,纯电子相干性与电子基态的纯振动相干性。此外,我们演示了后者如何依赖于激子相互作用来表现出来。这些结果将最近提出的微观非平衡机制联系起来,以支持环境温度下的长时相干性,以及使用2D光子回波技术对振荡行为进行的实际实验观察,从而证实了电子自由度和振动自由度之间相互作用的基本重要性。轻集料。

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