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Observation of Nanosecond Laser Induced Fluorescence of In Vitro Seawater Phytoplankton

机译:纳秒激光诱导的海水浮游植物荧光观察

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摘要

Seawater has been irradiated using a train of 70 ns flashes from a 440 nm laser source. This wavelength is on resonance with the blue absorption peak of Chlorophyll pigment associated with the photosystem of in vitro phytoplankton. The resulting fluorescence at 685 nm is instantaneously recorded during each laser pulse using a streak camera. Delayed fluorescence is observed, yielding clues about initiation of the photosynthetic process on a nanosecond time scale. Further data processing allows for determination of the functional absorption cross section, found to be 0:0095 Å2, which is the first reporting of this number for in vitro phytoplankton. Unlike other flash-pump studies of Chlorophyll, using a LED or flashlampbased sources, the short laser pulse used here does not reveal any pulse-to-pulse hysteresis (i.e., variable fluorescence), indicating that the laser pulses used here are not able to drive the photosynthetic process to completion. This is attributed to competition from a back reaction between the photoexcited photosystem II and the intermediate electron acceptor. The significance of this work as a new type of deployable ocean fluorimeter is discussed, and it is believed the apparatus will have applications in thin-layer phytoplankton research.
机译:已使用来自440 nm激光源的70 ns闪光序列照射了海水。该波长与叶绿素色素的蓝色吸收峰共振,而该叶绿素色素与体外浮游植物的光系统有关。使用条纹照相机在每个激光脉冲期间立即记录在685 nm处产生的荧光。观察到延迟的荧光,从而提供了有关纳秒级光合过程启动的线索。进一步的数据处理可以确定功能吸收截面,该截面为0:0095Å2,这是该浮游植物体外数值的首次报道。与其他使用叶绿素或基于闪光灯的叶绿素的闪光泵研究不同,此处使用的短激光脉冲不会显示任何脉冲间的磁滞(即可变荧光),这表明此处使用的激光脉冲不能驱动光合作用过程完成。这归因于来自光激发光系统II和中间电子受体之间的逆反应的竞争。讨论了这项工作作为一种新型的可展开式海洋荧光计的重要性,并且相信该仪器将在薄层浮游植物研究中得到应用。

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