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Short-pulse pump-and-probe technique for airborne laser assessment ofPhotosystem II photochemical characteristics

机译:用于机载激光评估Photosystem II光化学特性的短脉冲泵浦和探测技术

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摘要

The development of a technique for laser measurement of fPhotosystem II (PS II) photochemical characteristics of phytoplankton and terrestrial vegetation from an airborne platform is described. Results of theoretical analysis and experimental study of pump-and-probe measurement of the PS II functional absorption cross-section and photochemical quantum yield are presented. The use of 10 ns probe pulses of PS II sub-saturating intensity provides a significant, up to 150-fold, increase in the fluorescence signal compared to conventional 'weak-probe' protocol. Little effect on the fluorescence yield from the probe-induced closure of PS II reaction centers is expected over the short pulse duration, and thus a relatively intense probe pulse can be used. On the other hand, a correction must be made for the probe-induced carotenoid triplet quenching and singlet-singlet annihilation. A Stern-Volmer model developed for this correction assumes a linear dependence of the quenching rate on the laser pulse fluence, which was experimentally validated. The PS II saturating pump pulse fluence (532 nm excitation) was found to be 10 and 40 mu mol quanta m(-2) for phytoplankton samples and leaves of higher plants, respectively. Thirty mus was determined as the optimal delay in the pump-probe pair. Our results indicate that the short-pulse pump-and-probe measurement of PS II photochemical characteristics can be implemented from an airborne platform using existing laser and LIDAR technologies.
机译:描述了从机载平台对浮游植物和陆生植物的fPhotosystem II(PS II)光化学特征进行激光测量的技术的发展。给出了PS II功能吸收截面和光化学量子产率的泵浦和探针测量的理论分析和实验研究的结果。与传统的“弱探针”协议相比,使用10 ns PS II次饱和强度的探测脉冲可显着提高荧光信号多达150倍。预期在短脉冲持续时间内,由探针诱导的PS II反应中心关闭对荧光产量的影响很小,因此可以使用相对强烈的探针脉冲。另一方面,必须对探针诱导的类胡萝卜素三重态猝灭和单重态单态an灭进行校正。为此校正而开发的Stern-Volmer模型假设淬灭速率与激光脉冲通量呈线性关系,这已通过实验验证。对于浮游植物样品和高等植物叶片,PS II饱和泵脉冲通量(532 nm激发)分别为10和40μmol量子m(-2)。将三十亩确定为泵浦探针对中的最佳延迟。我们的结果表明,可以使用现有的激光和LIDAR技术在机载平台上实现PS II光化学特性的短脉冲泵送和探针测量。

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