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Femtosecond Laser Filamentation for Atmospheric Sensing

机译:飞秒激光成丝用于大气传感

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Powerful femtosecond laser pulses propagating in transparent materials result in the formation of self-guided structures called filaments. Such filamentation in air can be controlled to occur at a distance as far as a few kilometers, making it ideally suited for remote sensing of pollutants in the atmosphere. On the one hand, the high intensity inside the filaments can induce the fragmentation of all matters in the path of filaments, resulting in the emission of characteristic fluorescence spectra (fingerprints) from the excited fragments, which can be used for the identification of various substances including chemical and biological species. On the other hand, along with the femtosecond laser filamentation, white-light supercontinuum emission in the infrared to UV range is generated, which can be used as an ideal light source for absorption Lidar. In this paper, we present an overview of recent progress concerning remote sensing of the atmosphere using femtosecond laser filamentation.
机译:在透明材料中传播的强大飞秒激光脉冲会导致形成称为细丝的自导结构。空气中的这种纤维化可以控制在最远几公里的距离,使其非常适用于遥感大气中的污染物。一方面,灯丝内部的高强度会引起灯丝路径中所有物质的碎片化,从而导致受激发碎片发出特征性的荧光光谱(指纹),可用于鉴定各种物质包括化学和生物物种。另一方面,随着飞秒激光灯丝化,产生了从红外到紫外线范围的白光超连续光谱发射,可以用作吸收激光雷达的理想光源。在本文中,我们概述了有关使用飞秒激光灯丝遥感大气的最新进展。

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