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Do photosynthetic complexes use quantum coherence to increase their efficiency? Probably not

机译:光合复合物是否使用量子相干来提高效率? 可能不是

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Answering the titular question has become a central motivation in the field of quantum biology, ever since the idea was raised following a series of experiments demonstrating wave-like behavior in photosynthetic complexes. Here, we report a direct evaluation of the effect of quantum coherence on the efficiency of three natural complexes. An open quantum systems approach allows us to simultaneously identify their level of “quantumness” and efficiency, under natural physiological conditions. We show that these systems reside in a mixed quantum-classical regime, characterized by dephasing-assisted transport. Yet, we find that the change in efficiency at this regime is minute at best, implying that the presence of quantum coherence does not play a substantial role in enhancing efficiency. However, in this regime, efficiency is independent of any structural parameters, suggesting that evolution may have driven natural complexes to their parameter regime to “design” their structure for other uses.
机译:回答名称问题已成为量子生物学领域的核心动机,以来,由于在一系列实验中提出了一系列实验,证明了光合复合物中的波浪状行为。在这里,我们报告了对量子相干对三种天然络合效率的影响的直接评估。开放量子系统方法使我们能够在天然生理条件下同时识别它们的“量子度”和效率水平。我们表明这些系统驻留在混合量子古典政权中,其特征在于辅助运输。然而,我们发现该制度的效率的变化充其量是分钟,这意味着量子相干性的存在在提高效率方面不会发挥重要作用。然而,在该制度中,效率与任何结构参数无关,表明演化可能使自然复合物驱动到其参数制度以“设计”它们的其他用途。

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