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首页> 外文期刊>Journal of Modern Optics >Trace methane gas detection by wavelength modulated off-axis integrated cavity output spectroscopy
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Trace methane gas detection by wavelength modulated off-axis integrated cavity output spectroscopy

机译:通过波长调制的轴轴集成腔输出光谱追踪甲烷气体检测

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摘要

An instrument based on wavelength modulation off-axis integrated cavity output spectroscopy (WM-OA-ICOS) was developed for detection of trace methane (CH4) gas. The wavelength modulation technique was employed to obtain the second harmonic of the CH4 absorption signal. The modulation parameters were optimized to obtain a maximum second harmonic signal. A noise-equivalent absorption sensitivity of 9.4 x 10(-11) cm(-1) Hz(-1/2) (corresponding to a detection limit of 28.9 ppbv for CH4 at this wavelength) was achieved using 2f detection. Compared with the traditional off-axis integrated cavity output spectroscopy (OA-ICOS) technique, WM-OA-ICOS provided an 8-fold improvement in detection sensitivity. CH4 concentration measurements were also achieved by normalization of second harmonic signal to first harmonic signal (2f/1f). The dynamic range and linearity of WM-OA-ICOS for both 2f method and 2f/1f method were investigated. The result showed that the 2f/1f method exhibited better linearity than 2f method.
机译:开发了一种基于波长调制轴外集成腔输出光谱(WM-OA-ICOS)的仪器,用于检测痕量甲烷(CH4)气体。使用波长调制技术来获得CH 4吸收信号的第二次谐波。调制参数被优化以获得最大的第二谐波信号。使用2F检测实现了9.4×10(-11 )cm(-1)厘米(-1/2)(-1/2)(-1/2)的噪声量吸收敏感性(-1/2)(-1/2)(对应于该波长在该波长的28.9ppbv的检出限)。与传统的轴外集成腔输出光谱(OA-ICOS)技术相比,WM-OA-ICOS提供了8倍的检测灵敏度的提高。通过将二次谐波信号的标准化到第一谐波信号(2F / 1F),还可以实现CH 4浓度测量。研究了用于2F方法和2F / 1F方法的WM-OA-ICO的动态范围和线性。结果表明,2F / 1F方法表现出比2F方法更好的线性度。

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