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Chirped laser dispersion spectroscopy with differential frequency generation source

机译:带有差分频率产生源的laser激光色散光谱

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摘要

A feasibility study of open-path methane detection at 3.4 μm using chirped laser dispersion spectroscopy (CLaDS) based on nonlinear differential frequency generation (DFG) laser source is performed. Application of a DFG source based on telecom laser sources and modulators allows mid-infrared CLaDS system to be optimized for measurements of gases at atmospheric conditions for which modulation in the GHz range is required. Excellent agreement between observed CLaDS signals and spectroscopic models has been observed.
机译:进行了基于非线性差分频率发生(DFG)激光源的chi激光色散光谱法(CLaDS)检测3.4μm开路甲烷的可行性研究。基于电信激光源和调制器的DFG源的应用可以优化中红外CLaDS系统,以在需要在GHz范围内进行调制的大气条件下测量气体。观察到的CLaDS信号与光谱模型之间的一致性极好。

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