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Acetylene detection based on diode laser QEPAS : combined wavelength and residual amplitude modulation

机译:基于二极管激光器QEPAS的乙炔检测:波长和残留振幅调制相结合

摘要

Quartz-enhanced photoacoustic spectroscopy (QEPAS) is demonstrated for acetylene detection at atmospheric pressure and room temperature with a fiber-coupled distributed feedback (DFB) diode laser operating at ~1.53 μm. An efficient approach for gas concentration calibration is demonstrated. The effect of residual amplitude modulation on the performance of wavelength modulated QEPAS is investigated theoretically and experimentally. With optimized spectrophone parameters and modulation depth, a minimum detectable limit (1σ) of ~2 part-per-million volume (ppmv) was achieved with an 8.44-mW diode laser, which corresponds to a normalized noise equivalent coefficient (1σ) of 6.16 × 10-8 cm-1 W/Hz1/2.
机译:石英增强光声光谱(QEPAS)被证明可在大气压和室温下通过光纤耦合分布反馈(DFB)二极管激光器(工作于〜1.53μm)检测乙炔。演示了一种有效的气体浓度校准方法。从理论上和实验上研究了残余幅度调制对波长调制QEPAS性能的影响。通过优化的分光器参数和调制深度,使用8.44 mW二极管激光器可实现约2百万分之体积(ppmv)的最小可检测极限(1σ),这对应于6.16的归一化噪声等效系数(1σ) ×10-8 cm-1 W / Hz1 / 2。

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