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Correlated Protein Environments Drive Quantum Coherence Lifetimes in Photosynthetic Pigment-Protein Complexes

机译:相关蛋白质环境在光合色素蛋白复合物中推动量子相干寿命

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摘要

Early reports of long-lived quantum beating signals in photosynthetic pigmentprotein complexes were interpreted to suggest that electronic coherence benefits from protection by the protein, but many subsequent studies have suggested instead that vibrational or vibronic contributions are responsible for the observed signals. Here, we devised two 2D-spectroscopy methods to observe how each exciton is perturbed by its nuclear environment in a photosynthetic complex. The first approach simultaneously monitors each exciton's energy fluctuations over time to obtain its time-dependent electronic-nuclear interactions. The second method isolates evidence of coupled interexcitonic environmental motions. The techniques are validated with Nile Blue A and subsequently used on the Fenna-Matthews-Olson (FMO) complex. The FMO data reveal that each exciton experiences nearly identical spectral motion after excitation and that spectral motion of one excited exciton induces similar motion on unpopulated neighboring excitonic states. These synchronized and correlated spectral dynamics prolong coherences in the FMO complex after femtosecond excitation.
机译:光合用法蛋白复合物中长寿命量子跳动信号的早期报告被解释为表明电子相干效果来自蛋白质的保护,但是提出了许多后续研究,而是振动或振动贡献对观察到的信号负责。在这里,我们设计了两个2D光谱方法,以观察每个激子在光合复合物中的核环境中的扰动。第一种方法同时监控每个激子的能量波动随着时间的推移,以获得其时间依赖的电子核相互作用。第二种方法分离耦合意外兴奋环境运动的证据。这些技术用尼罗蓝色A验证,随后在FENNA-MATTHEWS-OLSON(FMO)复合物上使用。 FMO数据显示,在激发后,每个激子经历几乎相同的光谱运动,并且一个激发激发器的光谱运动在未灌注的相邻兴奋状态下引起类似的运动。这些同步和相关的光谱动态延长了FMO复合物在飞秒励磁后的相干性。

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  • 来源
    《Current Forestry Reports》 |2018年第1期|共12页
  • 作者单位

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Univ Glasgow Glasgow Biomed Res Ctr Inst Biomed &

    Life Sci Glasgow Lanark Scotland;

    Univ Glasgow Glasgow Biomed Res Ctr Inst Biomed &

    Life Sci Glasgow Lanark Scotland;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

    Hamad Bin Khalifa Univ Qatar Fdn Qatar Environm &

    Energy Res Inst Doha Qatar;

    Univ Glasgow Glasgow Biomed Res Ctr Inst Biomed &

    Life Sci Glasgow Lanark Scotland;

    Univ Chicago Dept Chem Inst Biophys Dynam 5735 S Ellis Ave Chicago IL 60637 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
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