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振子能量传递的协同增强:局域激子-声子相互作用与非局域激子-声子相互作用的相互作用。

Vibronic enhancement of excitation energy transport: Interplay between local and non-local exciton-phonon interactions.

机构信息

Department of Chemistry, University of Warwick, Coventry CV4 7AL, United Kingdom.

出版信息

J Chem Phys. 2017 Feb 21;146(7):075101. doi: 10.1063/1.4976558.

DOI:10.1063/1.4976558
PMID:28228034
Abstract

It has been reported in recent years that vibronic resonance between vibrational energy of the intramolecular nuclear mode and excitation-energy difference is crucial to enhance excitation energy transport in light harvesting proteins. Here we investigate how vibronic enhancement induced by vibronic resonance is influenced by the details of local and non-local exciton-phonon interactions. We study a heterodimer model with parameters relevant to the light-harvesting proteins with the surrogate Hamiltonian quantum dynamics method in a vibronic basis. In addition, the impact of field-driven excitation on the efficiency of population transfer is compared with the instantaneous excitation, and the effect of multi-mode vibronic coupling is presented in comparison with the coupling to a single effective vibrational mode. We find that vibronic enhancement of site population transfer is strongly suppressed with the increase of non-local exciton-phonon interaction and increasing the number of strongly coupled high-frequency vibrational modes leads to a further decrease in vibronic enhancement. Our results indicate that vibronic enhancement is present but may be much smaller than previously thought and therefore care needs to be taken when interpreting its role in excitation energy transport. Our results also suggest that non-local exciton-phonon coupling, which is related to the fluctuation of the excitonic coupling, may be as important as local exciton-phonon coupling and should be included in any quantum dynamics model.

摘要

近年来有报道称,分子内核模式振动能量与激发能差之间的振子共振对增强光捕获蛋白质中的激发能传递至关重要。在这里,我们研究了振子共振引起的振子增强如何受到局部和非局部激子-声子相互作用细节的影响。我们使用替代哈密顿量量子动力学方法在振子基中研究了一个与光捕获蛋白质相关的参数的杂二聚体模型。此外,还比较了场驱动激发对种群转移效率的影响与瞬时激发的影响,并与耦合到单个有效振动模式进行了比较,展示了多模态振子耦合的影响。我们发现,随着非局部激子-声子相互作用的增加,位点种群转移的振子增强被强烈抑制,而与多个强耦合高频振动模式的耦合会导致振子增强进一步降低。我们的结果表明,振子增强确实存在,但可能比之前认为的要小得多,因此在解释其在激发能传递中的作用时需要谨慎。我们的结果还表明,与激子耦合的波动有关的非局部激子-声子耦合可能与局部激子-声子耦合一样重要,应该包含在任何量子动力学模型中。

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Vibronic enhancement of excitation energy transport: Interplay between local and non-local exciton-phonon interactions.振子能量传递的协同增强:局域激子-声子相互作用与非局域激子-声子相互作用的相互作用。
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