Ultra-sensitive carbon monoxide detection by using EC-QCL based quartz-enhanced photoacoustic spectroscopy

A quartz-enhanced photoacoustic spectroscopy (QEPAS) based sensor for carbon monoxide detection at ppbv levels was developed with a 4.65 μm external-cavity quantum cascade laser operating both in continuous wave (cw) and pulsed modes. A 23-fold enhancement of the measured CO signal amplitude was obt...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2012-05, Vol.107 (2), p.275-283
Hauptverfasser: Dong, L., Lewicki, R., Liu, K., Buerki, P. R., Weida, M. J., Tittel, F. K.
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Sprache:eng
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Zusammenfassung:A quartz-enhanced photoacoustic spectroscopy (QEPAS) based sensor for carbon monoxide detection at ppbv levels was developed with a 4.65 μm external-cavity quantum cascade laser operating both in continuous wave (cw) and pulsed modes. A 23-fold enhancement of the measured CO signal amplitude was obtained when water vapor, acting as a catalyst for vibrational energy transfer, was added to the targeted analyte mixture. In the cw mode, a noise-equivalent sensitivity (NES, 1 σ ) of 2 ppbv was achieved at a gas pressure of 100 Torr, for 1-s lock-in amplifier (LIA) time constant (TC), which corresponds to a normalized noise equivalent absorption coefficient (NNEA) of . In the pulsed mode, the determined NES and NNEA were 46 ppbv and , respectively, for a 3-ms LIA TC at atmospheric pressure with a laser scan rate of 18 cm -1 /s and a 50 % duty cycle. An intercomparison between cw and pulsed QEPAS-based CO detection is also reported.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-012-4949-1