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A robust, phase-sensitive system for seed laser frequency stabilization in Doppler LIDAR applications.

机译:一个强大的相位敏感系统,用于多普勒激光雷达应用中的种子激光频率稳定。

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Resonance fluorescence Doppler lidars have been instrumental to scientific understanding of the mesosphere and lower thermosphere. All 3-frequency Doppler lidars require a cw 'seed' laser with a stable and accurate carrier frequency. Since drift is inherent to tunable cw lasers, active feedback systems must be used to compensate the drift effectively. A system of PC-based laser frequency stabilization using wavelength modulation is described for Doppler lidar applications. The system has been shown to efficiently and conveniently lock a variety of seed lasers encountered in Doppler lidar to the Doppler-free spectral features of various metal vapors. This National Instruments LabVIEW-based system is described in detail, along with the spectroscopic setup. We also introduce the procedures for achieving optimal stability, methods of characterizing the performance and some common factors that may contribute to degraded performance.
机译:共振荧光多普勒激光雷达有助于科学了解中层和低层热层。所有3频多普勒激光雷达都需要具有稳定且准确的载波频率的连续波“种子”激光器。由于漂移是可调谐连续激光器固有的特性,因此必须使用有源反馈系统来有效补偿漂移。对于多普勒激光雷达应用,描述了一种使用波长调制的基于PC的激光频率稳定系统。该系统已被证明可以有效,方便地将多普勒激光雷达中遇到的各种种子激光器锁定在各种金属蒸气的无多普勒光谱特征上。详细介绍了基于NI LabVIEW的系统以及光谱设置。我们还将介绍实现最佳稳定性的过程,性能表征方法以及一些可能导致性能下降的常见因素。

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