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Stabilized master laser system for differential absorption lidar

机译:差分吸收激光雷达的稳定主激光系统

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摘要

Wavelength accuracy and stability are key requirements for differential absorption lidar (DIAL). We present a control and timing design for the dual-stabilized cw master lasers in a pulsed master-oscillator power-amplifier configuration, which forms a robust low-cost water-vapor DIAL transmitter system. This design operates at 823 nm for water-vapor spectroscopy using Fabry-Perot-type laser diodes. However, the techniques described could be applied to other laser technologies at other wavelengths. The system can be extended with additional off-line or side-line wavelengths. The on-line master laser is locked to the center of a water absorption line, while the beat frequency between the on-line and the off-line is locked to 16 GHz using only a bandpass microwave filter and low-frequency electronics. Optical frequency stabilities of the order of 1 MHz are achieved.
机译:波长精度和稳定性是差分吸收激光雷达(DIAL)的关键要求。我们介绍了脉冲主振荡器功率放大器配置中的双稳定连续主激光器的控制和时序设计,该结构形成了一个强大的低成本水蒸气DIAL发射器系统。对于使用Fabry-Perot型激光二极管进行的水蒸气光谱分析,该设计工作在823 nm处。但是,所描述的技术可以应用于其他波长的其他激光技术。可以使用其他离线或副线波长扩展该系统。在线主激光器被锁定在吸水线的中心,而在线和离线之间的拍频被锁定为仅使用带通微波滤波器和低频电子设备的16 GHz。实现了大约1 MHz的光频率稳定性。

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