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Direct Measurement of the Photoelectric Response Time of Bacteriorhodopsin via Electro-Optic Sampling

机译:通过光电采样直接测量细菌视紫红质的光电响应时间

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摘要

The photovoltaic signal associated with the primary photochemical event in an oriented bacteriorhodopsin film is measured by directly probing the electric field in the bacteriorhodopsin film using an ultrafast electro-optic sampling technique. The inherent response time is limited only by the laser pulse width of 500 fs, and permits a measurement of the photovoltage with a bandwidth of better than 350 GHz. All previous published studies have been carried out with bandwidths of 50 GHz or lower. We observe a charge buildup with an exponential formation time of 1.68 ± 0.05 ps and an initial decay time of 31.7 ps. Deconvolution with a 500-fs Gaussian excitation pulse reduces the exponential formation time to 1.61 ± 0.04 ps. The photovoltaic signal continues to rise for 4.5 ps after excitation, and the voltage profile corresponds well with the population dynamics of the K state. The origin of the fast photovoltage is assigned to the partial isomerization of the chromophore and the coupled motion of the Arg-82 residue during the primary event.
机译:通过使用超快速电光采样技术直接探测细菌视紫红质膜中的电场,可以测量与定向细菌视紫红质膜中的主要光化学事件相关的光伏信号。固有的响应时间仅受500 fs的激光脉冲宽度限制,并允许以高于350 GHz的带宽测量光电压。以前所有已发表的研究都是在50 GHz或更低的带宽下进行的。我们观察到电荷积累的指数形成时间为1.68±0.05 ps,初始衰减时间为31.7 ps。用500 fs高斯激励脉冲进行反卷积可将指数形成时间减少到1.61±0.04 ps。激发后,光伏信号持续上升4.5 ps,电压曲线与K状态的种群动态很好地吻合。快速光电压的起源与主要事件期间发色团的部分异构化以及Arg-82残基的耦合运动有关。

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