Wang Binyu, Liu Dong, Pan Sunqiang, Chen Sijie, Wu Lingyun, Xiao Da, Zhang Kai, Wang Nanchao, Wu Hongda, Zhang Kaifeng, Zhang Tianhu, Chen Feitong, Jiang Chengchong, Liu Chong
Opt Lett. 2022 Oct 1;47(19):5028-5031. doi: 10.1364/OL.471927.
A novel implementation of high-spectral-resolution LIDAR based on a passively Q-switched few-longitudinal mode laser (PQFLM-HSRL) is proposed, and the prototype is built for detecting aerosol and cloud characteristics. The spatial-temporal distributions of the aerosol and cloud are continuously observed by the PQFLM-HSRL for the first time, to the best of our knowledge. Based on observation, we present the retrieval results of backscatter coefficient, particle linear depolarization ratio, and LIDAR ratio, and these intensive parameters are used to classify the aerosol and cloud into different types. Particularly, we have observed mix-phased clouds. The resulting aerosol optical depths (AODs) are highly consistent with CE-318, the Sun photometer measurements of the local National Meteorological Station (NMS), which verify the retrieval accuracy and the system stability. In addition, the retrieved AODs also characterize the ambient air quality, which show a high correlation with the measured PM concentrations. The implementation of the PQFLM-HSRL provides a new method for atmospheric feature detection, which shows superior scientific potential for further study on climate change and environmental health.
提出了一种基于被动调Q少纵模激光器的高光谱分辨率激光雷达(PQFLM-HSRL)的新实施方案,并搭建了用于探测气溶胶和云特性的原型系统。据我们所知,PQFLM-HSRL首次对气溶胶和云的时空分布进行了连续观测。基于观测结果,我们给出了后向散射系数、粒子线性偏振比和激光雷达比的反演结果,这些密集参数用于将气溶胶和云分类为不同类型。特别地,我们观测到了混合相云。所得的气溶胶光学厚度(AOD)与当地国家气象站(NMS)的CE-318太阳光度计测量结果高度一致,验证了反演精度和系统稳定性。此外,反演得到的AOD还表征了环境空气质量,与实测的PM浓度具有高度相关性。PQFLM-HSRL的实施为大气特征探测提供了一种新方法,在气候变化和环境健康的进一步研究中显示出卓越的科学潜力。