Liu Fuchao, Wang Rui, Yi Fan, Huang Wentao, Ban Chao, Pan Weilin, Wang Zhangjun, Hu Hongqiao
Opt Express. 2021 Mar 29;29(7):10059-10076. doi: 10.1364/OE.418926.
A pure rotational Raman lidar (PRRL) for full-day troposphere temperature measurement was deployed in February 2020 at Zhongshan Station (69.37°S, 76.37°E), Antarctica, by the 36 Chinese National Antarctic Research Expedition. The PRRL emits a 532.23-nm laser light and employs a 203.2-mm telescope to collect atmospheric backscatter. Cubic nonpolarizing beam splitters are introduced to yield a compact optics arrangement. A quasi-single-line-extraction technique is proposed for extracting the molecular Stokes line signals. A lidar container with a window system is customized to house the whole PRRL system for long-term stable operation. An approach using a laser plummet is developed for fast and convenient adjustment of the telescope zenithward. A home-made calibration module is utilized for straightforward visual optics adjustment with ∼35.3-μrad angular positioning accuracy. Both typical daytime and nighttime temperature measurement examples are presented to verify the lidar performance. From a 30-h continuous temperature measurement result, it is found the tropopause is located at ∼10.8 km above ground level with a mean temperature of ∼203 K; significant temperature variability occurs only at the inversion areas, while off which the 1-h temperature profiles are relatively similar in form with an average lapse rate of -8.3 K/km.
2020年2月,中国第36次南极科学考察队在南极洲中山站(南纬69.37°,东经76.37°)部署了一台用于全天对流层温度测量的纯转动拉曼激光雷达(PRRL)。该PRRL发射波长为532.23 nm的激光,并使用直径203.2 mm的望远镜收集大气后向散射信号。引入立方型非偏振分束器以实现紧凑的光学布局。提出了一种准单谱线提取技术来提取分子斯托克斯线信号。定制了一个带有窗口系统的激光雷达方舱,用于容纳整个PRRL系统以实现长期稳定运行。开发了一种利用激光垂线仪的方法,以便快速、方便地将望远镜调整到天顶方向。使用自制的校准模块进行直观的光学调整,角定位精度约为35.3 μrad。给出了典型的白天和夜间温度测量实例,以验证激光雷达的性能。从30小时的连续温度测量结果发现,对流层顶位于地面以上约10.8 km处,平均温度约为203 K;显著的温度变化仅发生在逆温区域,而在逆温区域之外,1小时的温度剖面形态相对相似,平均递减率为-8.3 K/km。