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Ultraviolet high-spectral-resolution Doppler lidar for measuring wind field and aerosol optical properties

机译:紫外高光谱多普勒激光雷达,用于测量风场和气溶胶光学特性

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An ultraviolet incoherent Doppler lidar that incorporates the high-spectral-resolution (HSR) technique has been developed for measuring the wind field and aerosol optical properties in the troposphere. An injection seeded and tripled Nd:YAG laser at an ultraviolet wavelength of 355 nm was used in the lidar system. The FIRS technique can resolve the aerosol Mie backscatter and the molecular Rayleigh backscatter to derive the signal components. By detecting the Mie backscatter, a great increase in the Doppler filter sensitivity was realized compared to the conventional incoherent Doppler lidars that detected the Rayleigh backscatter. The wind velocity distribution in a two-dimensional cross section was measured. By using the HSR technique, multifunction and absolute value measurements were realized for aerosol extinction, and volume backscatter coefficients; the laser beam transmittance, the lidar ratio, and the backscatter ratio, are derived from these measurements. (c) 2005 Optical Society of America.
机译:已经开发出一种结合了高光谱分辨率(HSR)技术的紫外线非相干多普勒激光雷达,用于测量对流层中的风场和气溶胶光学特性。在激光雷达系统中使用了355 nm紫外线波长的Nd:YAG注入种子和三重注入激光。 FIRS技术可以解决气溶胶Mie反向散射和分子瑞利反向散射,从而得出信号分量。通过检测Mie反向散射,与检测瑞利反向散射的传统非相干多普勒激光雷达相比,多普勒滤波器的灵敏度大大提高。测量了二维截面中的风速分布。通过使用HSR技术,实现了气溶胶消光和体积反向散射系数的多功能和绝对值测量;从这些测量结果可以得出激光束的透射率,激光雷达比和反向散射比。 (c)2005年美国眼镜学会。

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