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An OPO-based lidar system for differential absorption measurements of hazardous gases in mid-infrared spectral region

机译:基于OPO的激光雷达系统,用于中红外光谱区中有害气体的差分吸收测量

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We present the second phase of our work in project LISATNAS devoted to design the differential absorption lidar (DIAL) based on the mid-infrared (IR) tunable Optical Parametric Oscillator (OPO). Generation of tunable mid-infrared laser radiation using a two stage tandem OPO was demonstrated. The first stage was based on the nonlinear KTP crystal and produced up to 45 mJ of 1.57 μm radiation, while pumped by a commercial Q-switched Nd:YAG laser. The quality of signal beam was improved by the use of unstable resonator. The AgGaSe_2 crystal was used in the second stage OPO. Idler energies up to 1.2 mJ were generated in this stage within tuning range from 6 to 12 μm. The receiver consisted of a 250 mm gold mirror telescope, pyroelectric detector with control electronics. Preliminary field test results for detection of H_2O using a retroreflector are presented.
机译:我们介绍了LISATNAS项目的第二阶段工作,该项目致力于基于中红外(IR)可调光参量振荡器(OPO)设计差分吸收激光雷达(DIAL)。演示了使用两级串联OPO生成可调谐的中红外激光辐射。第一阶段基于非线性KTP晶体,并由商用Q开关Nd:YAG激光器泵浦,产生最高45 mJ的1.57μm辐射。通过使用不稳定的谐振器可以改善信号束的质量。在第二阶段OPO中使用了AgGaSe_2晶体。在此阶段,在6至12μm的调谐范围内产生了高达1.2 mJ的惰轮能量。接收器由250毫米金镜望远镜,带有控制电子元件的热释电探测器组成。给出了使用后向反射器检测H_2O的初步现场测试结果。

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