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Acousto-Optic Q-Switched Fiber Laser-Based Intra-Cavity Photoacoustic Spectroscopy for Trace Gas Detection

机译:基于声光调Q光纤激光器的腔内光声光谱法检测痕量气体

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摘要

We proposed a new method for gas detection in photoacoustic spectroscopy based on acousto-optic Q-switched fiber laser by merging a transmission PAS cell (resonant frequency f0 = 5.3 kHz) inside the fiber laser cavity. The Q-switching was achieved by an acousto-optic modulator, achieving a peak pulse power of ~679 mW in the case of the acousto-optic modulation signal with an optimized duty ratio of 10%. We used a custom-made fiber Bragg grating with a central wavelength of 1530.37 nm (the absorption peak of C2H2) to select the laser wavelength. The system achieved a linear response (R2 = 0.9941) in a concentration range from 400 to 7000 ppmv, and the minimum detection limit compared to that of a conventional intensity modulation system was enhanced by 94.2 times.
机译:我们提出了一种通过合并光纤激光器腔内的传输PAS单元(共振频率f0 = 5.3 kHz),基于声光调Q光纤激光器在光声光谱中检测气体的新方法。 Q开关是通过声光调制器实现的,在声光调制信号的占空比为10%的情况下,峰值脉冲功率约为679 mW。我们使用定制的中心波长为1530.37 nm(C2H2的吸收峰)的光纤布拉格光栅来选择激光波长。该系统在400至7000 ppmv的浓度范围内实现了线性响应(R 2 = 0.9941),与常规强度调制系统相比,最低检测限提高了94.2倍。

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