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共振振动在异质天线的高能态上产生量子桥。

Resonant vibrations produce quantum bridge over high-energy states in heterogeneous antenna.

作者信息

Novoderezhkin Vladimir I

机构信息

A. N. Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Leninskie Gory, 119992, Moscow, Russia.

出版信息

Photosynth Res. 2023 Oct;158(1):13-21. doi: 10.1007/s11120-023-01042-w. Epub 2023 Aug 16.

Abstract

Photosynthetic light-harvesting complexes usually contain several pools of molecules with a big difference in transition energies, for example, chlorophylls a and b in plant antennas. Some pathways of the excitation energy transfer may include pigments from the low-energy pool separated by a site occupied by a high-energy molecule. We demonstrate that such pathways may be functional if high-frequency intramolecular vibrations fall in resonance with the energy gap between the neighboring molecules belonging to different pools. In this case, a vibration-assisted mixing of the excited states can produce delocalized vibronic states playing a role of 'quantum bridge' that facilitates a passage over high-energy barrier. We perform calculations of the excitation dynamics in the model three-state system with the parameters emerging from our previous studies of real antennas. Simulation of the dynamics in an explicit electron-vibrational basis demonstrates that the rate of transfer between the two chlorophylls a through the chlorophyll b intermediate is increased by a factor of 1.7-2 in the presence of resonant vibration. A possible influence of energetic disorder and other (non-resonant) vibrations on this effect is discussed.

摘要

光合光捕获复合物通常包含几类跃迁能量差异很大的分子池,例如植物天线中的叶绿素a和叶绿素b。一些激发能量转移途径可能包括来自低能量池的色素,这些色素被一个由高能量分子占据的位点隔开。我们证明,如果高频分子内振动与属于不同池的相邻分子之间的能隙发生共振,这样的途径可能是起作用的。在这种情况下,激发态的振动辅助混合可以产生离域的振动电子态,起到“量子桥”的作用,促进越过高能垒。我们用从之前对实际天线的研究中得出的参数,对模型三态系统中的激发动力学进行了计算。在显式电子 - 振动基下对动力学的模拟表明,在存在共振振动的情况下,通过叶绿素b中间体在两个叶绿素a之间的转移速率提高了1.7 - 2倍。讨论了能量无序和其他(非共振)振动对这种效应的可能影响。

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