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Ultrafast infrared observation of exciton equilibration from oriented single crystals of photosystem II

机译:超快速红外观察光系统II取向单晶的激子平衡

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In oxygenic photosynthesis, two photosystems work in series. Each of them contains a reaction centre that is surrounded by light-harvesting antennae, which absorb the light and transfer the excitation energy to the reaction centre where electron transfer reactions are driven. Here we report a critical test for two contrasting models of light harvesting by photosystem II cores, known as the trap-limited and the transfer-to-the trap-limited model. Oriented single crystals of photosystem II core complexes of Synechococcus elongatus are excited by polarized visible light and the transient absorption is probed with polarized light in the infrared. The dichroic amplitudes resulting from photoselection are maintained on the 60?ps timescale that corresponds to the dominant energy transfer process providing compelling evidence for the transfer-to-the-trap limitation of the overall light-harvesting process. This finding has functional implications for the quenching of excited states allowing plants to survive under high light intensities.
机译:在氧气的光合作用中,两个光系统串联工作。它们每个都包含一个被光收集天线包围的反应中心,光吸收天线吸收光并将激发能量转移到驱动电子转移反应的反应中心。在这里,我们报告了对两个由光系统II核心进行光收集的对比模型的关键测试,这些模型称为陷阱限制模型和转移至陷阱限制模型。细长的突触球菌的光系统II核心复合物的定向单晶被偏振可见光激发,并用红外偏振光探测瞬态吸收。由光选择产生的二向色振幅维持在60?ps的时标上,这与主要的能量转移过程相对应,为整个光收集过程的转移到陷阱限制提供了有力的证据。这一发现对激发态的猝灭具有功能性意义,使植物能够在高光强度下生存。

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