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用于遥感1.6μm附近一氧化碳和水的多频差分吸收激光雷达系统。

Multi-frequency differential absorption LIDAR system for remote sensing of CO and HO near 1.6 µm.

作者信息

Wagner Gerd A, Plusquellic David F

出版信息

Opt Express. 2018 Jul 23;26(15):19420-19434. doi: 10.1364/OE.26.019420.

Abstract

The specifications and performance of a ground-based differential absorption LIDAR (light detection and ranging) system (DIAL) using an optical parametric oscillator (OPO) are presented. The OPO is injection-seeded with the output of a confocal filter cavity at frequencies generated by an electro-optic phase modulator (EOM) from a fixed-frequency external cavity diode laser (ECDL). The number of seed frequencies, frequency spacings, and duration is controlled with an arbitrary waveform generator (AWG) driving the EOM. Range resolved data are acquired using both photon current and photon counts from a hybrid detection system. The DIAL measurements are performed using a repeating sequence of 10 frequencies spanning a range of 37.5 GHz near 1602.2 nm to sequentially sample CO and HO at 10 Hz. Dry air mixing ratios of CO and HO with a resolution of 250 m and an averaging time of 10 min resulted in uncertainties as low as 6 µmol/mol (ppm) and 0.44 g/kg, respectively. Simultaneous measurements using an integrated path differential absorption (IPDA) LIDAR system and in situ point sensor calibrated to WMO (World Meteorological Organization) gas standards are conducted over two 10 hr nighttime periods to support traceability of the DIAL results. The column averaged DIAL mixing ratios agree with the IPDA LIDAR results to within the measured uncertainties for much of two measurement periods. Some of the discrepancies with the in situ point sensor results are revealed through trends observed in the gradients of the range resolved DIAL data.

摘要

介绍了一种使用光学参量振荡器(OPO)的地基差分吸收激光雷达(LIDAR)系统(DIAL)的规格和性能。OPO由共焦滤波腔的输出注入种子光,该共焦滤波腔的频率由电光相位调制器(EOM)从固定频率外腔二极管激光器(ECDL)产生。种子频率的数量、频率间隔和持续时间由驱动EOM的任意波形发生器(AWG)控制。使用混合检测系统的光子电流和光子计数获取距离分辨数据。DIAL测量使用10个频率的重复序列进行,频率范围在1602.2 nm附近的37.5 GHz内,以10 Hz的频率依次对CO和HO进行采样。CO和HO的干空气混合比分辨率为250 m,平均时间为10分钟,不确定度分别低至6 µmol/mol(ppm)和0.44 g/kg。在两个10小时的夜间时段内,使用积分路径差分吸收(IPDA)激光雷达系统和根据世界气象组织(WMO)气体标准校准的原位点传感器进行同步测量,以支持DIAL结果的可追溯性。在两个测量时段的大部分时间里,柱平均DIAL混合比与IPDA激光雷达结果在测量不确定度范围内一致。通过在距离分辨DIAL数据梯度中观察到的趋势,揭示了与原位点传感器结果的一些差异。

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