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Rapid and sensitive trace gas detection with continuous wave Optical Parametric Oscillator-based Wavelength Modulation Spectroscopy

机译:连续波基于光学参量振荡器的波长调制光谱法快速灵敏地检测痕量气体

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摘要

A fiber-amplified Distributed Bragg Reflector diode laser is used to pump a continuous wave, singly resonant Optical Parametric Oscillator (OPO). The output radiation covers the 3–4 μm with ability of rapid (100 THz/s) and broad mode-hop-free tuning (5 cm−1). Wavelength Modulation Spectroscopy is combined with the OPO to take optimal advantage of the spectral scan speed. The sensitivity of the system was determined as 0.8 ppbv (parts-per-billion by volume) for ethane (C2H6) for the absorption peak at 2996.9 cm−1 recorded in 1.3 seconds, corresponding to a noise equivalent absorption sensitivity (NEAS) of 1.2×10−9 cm−1/Hz1/2. A comparison between results using the 1st, 2nd and 4th harmonic derivative signal from wavelength modulation was performed. The broad continuous tunability was demonstrated by covering 35 cm−1 while recording absorption features of ethane, methane and water.
机译:光纤放大的分布式布拉格反射器二极管激光器用于泵浦连续波,单谐振光参量振荡器(OPO)。输出辐射覆盖3–4μm,具有快速(100 THz / s)和无跳模调谐(5 cm-1)的能力。波长调制光谱技术与OPO结合使用,可以充分利用光谱扫描速度。对于1.3秒内记录的2996.9 cm-1处的吸收峰,对于乙烷(C2H6)的系统灵敏度确定为0.8 ppbv(十亿分之一体积),相当于1.2的噪声等效吸收灵敏度(NEAS) ×10-9 cm-1 / Hz1 / 2。使用来自波长调制的一阶,二阶和四阶谐波导数信号进行了结果之间的比较。覆盖35 cm-1的同时记录了乙烷,甲烷和水的吸收特征,证明了广泛的连续可调性。

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