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Solid-state 2-micron Laser Transmitter Advancement for Wind and Carbon Dioxide Measurements from Ground, Airborne, and Space-based Lidar Systems

机译:固态2微米激光发射器在地面,机载和天基激光雷达系统中用于风和二氧化碳测量的进步

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摘要

NASA Langley Research Center has been developing 2-micron lidar technologies over a decade for wind measurements, utilizing coherent Doppler wind lidar technique and carbon dioxide measurements, utilizing Differential Absorption Lidar (DIAL) technique. Significant advancements have been made towards developing state-of-the-art technologies towards laser transmitters, detectors, and receiver systems. These efforts have led to the development of solid-state lasers with high pulse energy, tunablility, wavelength-stability, and double-pulsed operation. This paper will present a review of these technological developments along with examples of high resolution wind and high precision CO_2 measurements in the atmosphere. Plans for the development of compact high power lasers for applications in airborne and future space platforms for wind and regional to global scale measurement of atmospheric CO_2 will also be discussed.
机译:美国国家航空航天局兰利研究中心在过去的十年中一直在开发2微米激光雷达技术,以利用相干多普勒风激光雷达技术和二氧化碳测量技术,利用差分吸收激光雷达(DIAL)技术进行风测量。在向激光发射器,检测器和接收器系统发展最新技术方面已取得了重大进展。这些努力导致了具有高脉冲能量,可延展性,波长稳定性和双脉冲操作的固态激光器的开发。本文将对这些技术发展进行回顾,并提供高分辨率风向和大气中高精度CO_2测量的示例。还将讨论开发紧凑型高功率激光器的计划,这些激光器将用于空中和未来的空间平台,用于风能以及大气CO_2的区域乃至全球规模的测量。

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