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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Quantum coherence effects in natural light-induced processes: cis-trans photoisomerization of model retinal under incoherent excitation
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Quantum coherence effects in natural light-induced processes: cis-trans photoisomerization of model retinal under incoherent excitation

机译:自然光诱导过程中的量子相干效应:模型在非相干激发下视网膜的顺-反光异构化

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We present a theoretical study of quantum coherence effects in the primary cis-trans photoisomerization of retinal in rhodopsin induced by incoherent solar light. Using the partial secular Bloch-Redfield quantum master equation approach based on a two-state two-mode linear vibronic coupling model of the retinal chromophore [S. Hahn and G. Stock, J. Phys. Chem. B, 2000, 104, 1146-1149], we show that a sudden turn-on of incoherent pumping can generate substantial Fano coherences among the excited states of retinal. These coherences are the most pronounced in the regime where the matrix elements of the transition dipole moment between the ground and excited eigenstates are parallel to one another. We show that even when the transition dipole moments are perpendicular (implying the absence of light-induced Fano coherence) a small amount of excited-state coherence is still generated due to the coupling to intramolecular vibrational modes and the protein environment, causing depopulation of the excited eigenstates. The overall effect of the coherences on the steady-state population and on the photoproduct quantum yield is shown to be small; however we observe a significant transient effect on the formation of the trans photoproduct, enhancing the photoreaction quantum yield by similar to 11% at 200 fs. These calculations suggest that coupling to intramolecular vibrational modes and the protein environment play an important role in photoreaction dynamics, suppressing oscillations in the quantum yield associated with Fano interference.
机译:我们提出了理论上的量子相干效应在视光中由不相干太阳光诱导的视紫红质中视网膜的主要顺式-反式光异构化的研究。使用部分长期的Bloch-Redfield量子主方程方法基于视网膜发色团的两态两模式线性振动耦合模型[S. Hahn和G.Stock,J.Phys。化学[B,2000,104,1146-1149],我们显示非相干泵浦的突然开启会在视网膜的激发态之间产生大量的Fano相干性。在基态和受激本征态之间的跃迁偶极矩的矩阵元素彼此平行的情况下,这些相干性最为明显。我们显示,即使跃迁偶极矩是垂直的(暗示不存在光诱导的Fano相干性),由于与分子内振动模式和蛋白质环境的耦合,仍然会产生少量的激发态相干性,从而导致分子的减少兴奋的本征态。相干对稳态种群和对光产物量子产率的总体影响很小。然而,我们观察到了对反式光产物形成的显着瞬态效应,在200 fs下将光反应量子产率提高了约11%。这些计算表明,与分子内振动模式和蛋白质环境的耦合在光反应动力学中起着重要作用,从而抑制了与Fano干扰有关的量子产率的振荡。

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