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Combined use of Mie–Raman and fluorescence lidar observations for improving aerosol characterization: feasibility experiment

机译:结合MIE-Raman和荧光激光雷达改善气溶胶表征的观测:可行性实验

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To study the feasibility of a fluorescence lidar for aerosol characterization, the fluorescence channel is added to the LILAS multiwavelength Mie–Raman lidar of Lille University, France. A part of the fluorescence spectrum induced by 355?nm laser radiation is selected by the interference filter of 44?nm bandwidth centered at 466?nm. Such an approach has proved to have high sensitivity, allowing fluorescence signals from weak aerosol layers to be detected and the fluorescence backscattering coefficient from the ratio of fluorescence and nitrogen Raman backscatters to be calculated. Observations were performed during the November 2019–February 2020 period. The fluorescence capacity (ratio of fluorescence to elastic backscattering coefficients), measured under conditions of low relative humidity, varied in a wide range, being the highest for the smoke and the lowest for the dust particles. The results presented also demonstrate that the fluorescence measurements can be used for monitoring the aerosol inside the cloud layers.
机译:为研究荧光激光雷达用于气溶胶表征的可行性,法国里尔大学的Lilas多波长Mie-Raman Lierar加入了荧光通道。由355〜NM激光辐射引起的荧光光谱的一部分由44Ω带宽的干涉滤光器选择为466ΩNM。已经证明,这种方法具有高灵敏度,允许检测来自弱气溶胶层的荧光信号,并且从荧光和氮拉曼反向运动员的比率进行荧光反向散射系数。在2019年11月至2月20日期期间进行了观察。在低相对湿度的条件下测量的荧光容量(荧光与弹性背散射系数的比率)在宽范围内变化,是烟雾的最高和灰尘颗粒的最低。提出的结果还表明荧光测量可用于监测云层内的气溶胶。

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