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Solving structure in the CP29 light harvesting complex with polarization-phased 2D electronic spectroscopy

机译:偏振相二维电子光谱法解决CP29集光体中的结构

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The CP29 light harvesting complex from green plants is a pigment-protein complex believed to collect, conduct, and quench electronic excitation energy in photosynthesis. We have spectroscopically determined the relative angle between electronic transition dipole moments of its chlorophyll excitation energy transfer pairs in their local protein environments without relying on simulations or an X-ray crystal structure. To do so, we measure a basis set of polarized 2D electronic spectra and isolate their absorptive components on account of the tensor relation between the light polarization sequences used to obtain them. This broadly applicable advance further enhances the acuity of polarized 2D electronic spectroscopy and provides a general means to initiate or feed back on the structural modeling of electronically-coupled chromophores in condensed phase systems, tightening the inferred relations between the spatial and electronic landscapes of ultrafast energy flow. We also discuss the pigment composition of CP29 in the context of light harvesting, energy channeling, and photoprotection within photo-system II.
机译:来自绿色植物的CP29集光复合物是一种色素-蛋白质复合物,据信可以在光合作用中收集,传导和猝灭电子激发能。我们已经在不依赖模拟或X射线晶体结构的情况下,通过光谱确定了其叶绿素激发能转移对在其局部蛋白质环境中电子跃迁偶极矩之间的相对角度。为此,我们测量了极化2D电子光谱的基础集,并根据用于获得它们的光偏振序列之间的张量关系来隔离其吸收分量。这一广泛适用的进展进一步提高了极化2D电子光谱的敏锐度,并提供了一种启动或反馈凝聚相系统中电子耦合发色团的结构模型的通用方法,从而加强了超快能量的空间和电子景观之间的推断关系。流。我们还讨论了光系统II中光收集,能量通道化和光保护作用下CP29的颜料组成。

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