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首页> 外文期刊>Applied optics >Performance capabilities of middle-atmosphere temperature lidars: comparison of Na, Fe, K, Ca, Ca~(+), and Rayleigh systems
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Performance capabilities of middle-atmosphere temperature lidars: comparison of Na, Fe, K, Ca, Ca~(+), and Rayleigh systems

机译:中大气层激光雷达的性能:Na,Fe,K,Ca,Ca〜(+)和瑞利系统的比较

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摘要

The measurement accuracies of modern resonance fluorescence and Rayleigh temperature lidars are limited primarily by photon noise. The narrowband three-frequency fluorescence technique is shown to perform within a few decibels of the theoretical optimum at night for both temperature and wind observations. These systems also exhibit good performance during the day because the fluorescence wavelengths of Na, Fe, K, Ca, and Ca~(+) all correspond to strong solar Fraunhofer lines, where sky brightness is attenuated by a factor of 5 or more. Whereas Na systems achieve the highest signal-to-noise ratios for mesopause region observations (80-105 km), the three-frequency Fe system is attractive because it performs well as both a fluorescence and a Rayleigh lidar throughout the middle atmosphere at approximately 25-110 km.
机译:现代共振荧光和瑞利温度激光雷达的测量精度主要受到光子噪声的限制。窄带三频荧光技术在夜间对温度和风的观测都表现出理论上最佳值的几分贝。这些系统在白天也表现出良好的性能,因为Na,Fe,K,Ca和Ca〜(+)的荧光波长全部对应于强太阳Fraunhofer谱线,其中天空亮度衰减了5倍或更多。对于中绝经期区域观测而言,Na系统达到最高的信噪比(80-105 km),而三频Fe系统具有吸引力,因为它在整个中层大气中在大约25的温度下均具有良好的荧光和瑞利激光雷达性能-110公里

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