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Quantum coherence as a witness of vibronically hot energy transfer in bacterial reaction center

机译:量子相干性是细菌反应中心中玻璃态热能转移的见证

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Photosynthetic proteins have evolved over billions of years so as to undergo optimal energy transfer to the sites of charge separation. On the basis of spectroscopically detected quantum coherences, it has been suggested that this energy transfer is partially wavelike. This conclusion depends critically on the assignment of the coherences to the evolution of excitonic superpositions. We demonstrate that, for a bacterial reaction center protein, long-lived coherent spectroscopic oscillations, which bear canonical signatures of excitonic superpositions, are essentially vibrational excited-state coherences shifted to the ground state of the chromophores. We show that the appearance of these coherences arises from a release of electronic energy during energy transfer. Our results establish how energy migrates on vibrationally hot chromophores in the reaction center, and they call for a reexamination of claims of quantum energy transfer in photosynthesis.
机译:光合蛋白已经进化了数十亿年,以便进行最佳的能量转移到电荷分离的位置。根据光谱检测到的量子相干性,已经表明这种能量转移是部分波状的。该结论主要取决于相干对激子叠加的演化的分配。我们证明,对于细菌反应中心蛋白,长寿命的相干光谱振荡(其具有激子叠加的典型特征)实质上是振动激发态相干移至生色团的基态。我们表明,这些相干的出现是由于能量转移过程中电子能量的释放引起的。我们的研究结果确定了能量如何在反应中心的振动热生色团上迁移,并呼吁对光合作用中量子能转移的说法进行重新检验。

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