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Progress towards an Autonomous Field Deployable Diode-Laser-Based Differential Absorption Lidar (DIAL) for Profiling Water Vapor in the Lower Troposphere

机译:在对流层低层中模拟水汽的自主部署基于场址的可部署二极管激光的微分吸收激光雷达(DIAL)的进展

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A laser transmitter has been developed and incorporated into a micro-pulse differential absorption lidar (DIAL) for water vapor profiling in the lower troposphere as an important step towards long-term autonomous field operation. The laser transmitter utilizes two distributed Bragg reflector (DBR) diode lasers to injection seed a pulsed tapered semiconductor optical amplifier (TSOA), and is capable of producing up to 10 μJ of pulse energy with a 1 μs pulse duration and a 10 kHz pulse repetition frequency. The on-line wavelength of the laser transmitter can operate anywhere along the water vapor absorption feature centered at 828.187 nm (in vacuum) depending on the prevailing atmospheric conditions, while the off-line wavelength operates at 828.287 nm. This laser transmitter has been incorporated into a DIAL instrument utilizing a 35.6 cm Schmidt-Cassegrain telescope and fiber coupled avalanche photodiode (APD) operating in the photon counting mode. The performance of the DIAL instrument was demonstrated over a ten-day observation period. During this observation period, data from radiosondes were used to retrieve water vapor number density profiles for comparisons with the number density profiles retrieved from the DIAL data.
机译:已经开发了一种激光发射器,并将其集成到微脉冲差分吸收激光雷达(DIAL)中,以在对流层较低处进行水蒸气分析,这是迈向长期自主野外作业的重要一步。激光发射器利用两个分布式布拉格反射器(DBR)二极管激光器注入脉冲锥形半导体光放大器(TSOA)的种子,并能够以1μs的脉冲持续时间和10 kHz的脉冲重复频率产生高达10μJ的脉冲能量。频率。激光发射器的在线波长可以沿着水汽吸收特征以828.187 nm(在真空中)为中心随处变化,具体取决于当前的大气条件,而离线波长在828.287 nm处工作。该激光发射器已被整合到DIAL仪器中,该仪器使用35.6 cm Schmidt-Cassegrain望远镜和以光子计数模式工作的光纤耦合雪崩光电二极管(APD)。在10天的观察期内证明了DIAL仪器的性能。在此观察期内,无线电探空仪的数据用于检索水蒸气数密度分布图,以便与从DIAL数据中获取的数密度分布图进行比较。

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