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Nonlinear polarization spectroscopy in the frequency domain of light-harvesting complex II: absorption band substructure and exciton dynamics.

机译:采光复合体频域中的非线性偏振光谱II:吸收带子结构和激子动力学。

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摘要

Spectral substructure and ultrafast excitation dynamics have been investigated in the chlorophyll (Chl) a and b Qy region of isolated plant light-harvesting complex II (LHC II). We demonstrate the feasibility of Nonlinear Polarization Spectroscopy in the frequency domain, a novel photosynthesis research laser spectroscopic technique, to determine not only ultrafast population relaxation (T1) and dephasing (T2) times, but also to reveal the complex spectral substructure in the Qy band as well as the mode(s) of absorption band broadening at room temperature (RT). The study gives further direct evidence for the existence of up to now hypothetical "Chl forms". Of particular interest is the differentiated participation of the Chl forms in energy transfer in trimeric and aggregated LHC II. Limits for T2 are given in the range of a few ten fs. Inhomogeneous broadening does not exceed the homogeneous widths of the subbands at RT. The implications of the results for the energy transfer mechanisms in the antenna are discussed.
机译:在分离的植物采光复合物II(LHC II)的叶绿素(Chl)a和b Qy区域研究了光谱亚结构和超快激发动力学。我们证明了非线性偏振光谱技术在频域中的可行性,这是一种新颖的光合作用研究激光光谱技术,不仅可以确定超快的种群弛豫(T1)和相移(T2)时间,而且还可以揭示Qy波段中复杂的光谱子结构以及室温(RT)时吸收带展宽的模式。该研究进一步提供了直接的证据,证明目前为止尚存在假想的“ Chl形式”。特别令人感兴趣的是三聚体和聚集的LHC II中Chl形式在能量转移中的差异参与。 T2的极限范围为几十fs。在RT,不均匀的扩展不超过子带的均匀的宽度。讨论了结果对天线中能量传输机制的影响。

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