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首页> 外文期刊>Sensors >Ultrafast Laser-Based Spectroscopy and Sensing: Applications in LIBS, CARS, and THz Spectroscopy
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Ultrafast Laser-Based Spectroscopy and Sensing: Applications in LIBS, CARS, and THz Spectroscopy

机译:超快速激光光谱和传感:LIBS,CARS和THz光谱中的应用

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Ultrafast pulsed lasers find application in a range of spectroscopy and sensing techniques including laser induced breakdown spectroscopy (LIBS), coherent Raman spectroscopy, and terahertz (THz) spectroscopy. Whether based on absorption or emission processes, the characteristics of these techniques are heavily influenced by the use of ultrafast pulses in the signal generation process. Depending on the energy of the pulses used, the essential laser interaction process can primarily involve lattice vibrations, molecular rotations, or a combination of excited states produced by laser heating. While some of these techniques are currently confined to sensing at close ranges, others can be implemented for remote spectroscopic sensing owing principally to the laser pulse duration. We present a review of ultrafast laser-based spectroscopy techniques and discuss the use of these techniques to current and potential chemical and environmental sensing applications.
机译:超快脉冲激光器可用于各种光谱学和传感技术,包括激光诱导击穿光谱(LIBS),相干拉曼光谱和太赫兹(THz)光谱。无论是基于吸收过程还是发射过程,这些技术的特性都会受到信号生成过程中超快脉冲的使用的严重影响。根据所用脉冲的能量,基本的激光相互作用过程可能主要涉及晶格振动,分子旋转或激光加热产生的激发态的组合。尽管这些技术中的一些目前仅限于近距离感测,但主要由于激光脉冲持续时间,可以将其他技术用于远程光谱感测。我们目前对基于超快激光的光谱技术进行综述,并讨论将这些技术用于当前以及潜在的化学和环境传感应用。

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