首页> 外文期刊>IEEE journal of selected topics in quantum electronics: A publication of the IEEE Lasers and Electro-optics Society >A Narrow-Linewidth, Yb Fiber-Amplifier-Based Upper Atmospheric Doppler Temperature Lidar
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A Narrow-Linewidth, Yb Fiber-Amplifier-Based Upper Atmospheric Doppler Temperature Lidar

机译:一种基于窄线宽、Yb光纤放大器的高空多普勒测温激光雷达

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摘要

A compelling use for high-power, narrow-linewidth fiber lasers and amplifiers is atmospheric Doppler lidars. Such systems require high power, good beam quality, a broad tuning range, and ruggedness. In this paper, we present a ground-based diode-seeded, high-power, narrow-linewidth Yb fiber-amplifier-based Doppler temperature lidar operating at 1083 nm for measuring temperature and density of the neutral atmosphere from 300 to 1000 km. Principles of Doppler resonance fluorescence lidar will be introduced. The current state of the fiber-based lidar system will be addressed, as well as ongoing work to increase SNR through power scaling and improvement of spatial resolution and wind measurement capability via pulsed operation.
机译:高功率、窄线宽光纤激光器和放大器的一个引人注目的用途是大气多普勒激光雷达。这种系统需要高功率、良好的光束质量、宽调谐范围和坚固性。在本文中,我们提出了一种基于地面的二极管种子、高功率、窄线宽 Yb 光纤放大器的多普勒温度激光雷达,工作波长为 1083 nm,用于测量 300 至 1000 km 中性大气的温度和密度。将介绍多普勒共振荧光激光雷达的原理。将讨论基于光纤的激光雷达系统的当前状态,以及正在进行的通过功率缩放提高信噪比的工作,以及通过脉冲操作提高空间分辨率和风测量能力。

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