Jia Jingyu, Yi Fan
Appl Opt. 2014 Aug 20;53(24):5330-43. doi: 10.1364/AO.53.005330.
A pure rotational Raman (PRR) lidar based on a second-harmonic generation Nd:YAG laser is built for measuring the atmospheric temperature at altitudes of 5-30 km. A double-grating polychromator is designed to extract the wanted PRR signals and suppress the elastically backscattered light. Measured examples present the overall lidar performance. For the 1-h integrated lidar temperature profiles, the 1σ statistical uncertainty is less than 0.5 K up to ∼17 km, while it does not exceed 2 K at altitudes of 17-26.3 km. Based on 38 nights of high-quality lidar temperature data, the temperature variability is studied. It is found that the variability differs between the nights with inversion layer and those without it. On the nights without inversion layer, the local hour-to-hour temperature variability was mostly less than 1 K at altitudes of 5-17 km. At altitudes of 17-23 km, it grew to 1.2-2.4 K. On the nights with inversion layer, in the middle and upper troposphere, the significant variability was found to occur only at the inversion-layer altitudes. At other tropospheric altitudes off the inversion layer, the variability was generally less than 1 K. The statistical results indicate that the temperature variability mostly was stronger in the presence of inversion layer than in its absence.
基于二次谐波产生的Nd:YAG激光器构建了一台纯转动拉曼(PRR)激光雷达,用于测量5至30千米高度的大气温度。设计了一个双光栅多色仪来提取所需的PRR信号并抑制弹性后向散射光。测量示例展示了激光雷达的整体性能。对于1小时积分的激光雷达温度剖面,在高达约17千米处,1σ统计不确定度小于0.5 K,而在17至26.3千米高度处不超过2 K。基于38个夜晚的高质量激光雷达温度数据,研究了温度变异性。发现有逆温层的夜晚和没有逆温层的夜晚变异性有所不同。在没有逆温层的夜晚,在5至17千米高度处,当地逐小时温度变异性大多小于1 K。在17至23千米高度处,变异性增至1.2至2.4 K。在有逆温层的夜晚,在对流层中层和上层,显著变异性仅出现在逆温层高度处。在逆温层之外的其他对流层高度处,变异性通常小于1 K。统计结果表明,存在逆温层时温度变异性大多比没有逆温层时更强。