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Beatings in electronic 2D spectroscopy suggest another role of vibrations in photosynthetic light harvesting

机译:电子二维光谱的跳动表明振动在光合光收集中的另一个作用

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Light harvesting by photosynthetic organisms is nature's way to use solar energy for biomass growth. The process starts with light absorption in so-called antenna pigments, and is followed by transfer of the excited-state energy to reaction center proteins, where the energy is converted to an electrochemical gradient across the photosynthetic membrane (1). This potential is used to drive all energy-consuming processes in the photosynthetic organisms. Energy transfer in light harvesting occurs via various transport regimes. The limiting cases are the Forster-type incoherent excitation hopping from pigment to pigment and the exciton relaxation between energy levels, which are coherently delocalized over several antenna molecules. In both transfer regimes, vibrations play an important role in fulfilling the resonance condition of the rate equations.
机译:光合生物收集光是自然界利用太阳能促进生物量增长的方式。该过程首先是吸收所谓的天线色素中的光,然后将激发态能量转移到反应中心蛋白上,然后该能量被转换成光合作用膜上的电化学梯度(1)。这种潜力被用来驱动光合生物中所有耗能的过程。采光中的能量转移通过各种运输方式发生。局限性情况是从颜料到颜料的Forster型非相干激发跃迁和能级之间的激子弛豫,它们在几个天线分子上相干地离域。在两种传递方式中,振动在满足速率方程的共振条件时都起着重要作用。

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