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Mach-Zehnder interferometer as a spectral analyzer for molecular Doppler wind lidar

机译:马赫曾德尔干涉仪作为分子多普勒测风激光雷达的频谱分析仪

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摘要

The theoretical performance of a Mach-Zehnder interferometer used as a spectral analyzer for wind-speed measurement by direct-detection Doppler lidar is presented. The interferometer is optimized for measurement of wind velocity from the signal backscattered by the molecules. Two arrangements are proposed, involving two detection channels (DMZ) or four detection channels (QMZ). Using the assumption of a pure molecular signal with a Gaussian spectral profile, we derive an analytic expression for the standard deviation of the measurement error for each arrangement. They are then compared with the ideal spectral analyzer (ISA) and with the double-edge Fabry-Perot (DFP) in the case of a shot-noise-limited signal. The DMZ measurement error is shown to be only 1.65 times that of the ISA and is 1.4 times lower than that given by the DFP. The QMZ arrangement provides a measurement that is insensitive to the aerosol scattering contribution but gives a measurement error that is 1.4 times higher than that of the DMZ.
机译:介绍了用作直接检测多普勒激光雷达的风速频谱分析仪的马赫曾德尔干涉仪的理论性能。干涉仪经过优化,可以测量分子反向散射信号产生的风速。提出了两种安排,涉及两个检测通道(DMZ)或四个检测通道(QMZ)。使用具有高斯光谱轮廓的纯分子信号的假设,我们导出了每种布置的测量误差的标准偏差的解析表达式。然后将它们与理想频谱分析仪(ISA)以及在散粒噪声受限的信号下与双边缘Fabry-Perot(DFP)进行比较。 DMZ的测量误差仅为ISA的1.65倍,比DFP的测量误差低1.4倍。 QMZ装置提供的测量对气溶胶散射贡献不敏感,但测量误差比DMZ高1.4倍。

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