Methane detection with a near-infrared heterodyne phase-sensitive dispersion spectrometer at a stronger frequency modulation using direct injection-current dithering - Université du Littoral Côte d'Opale
Article Dans Une Revue Optics Express Année : 2023

Methane detection with a near-infrared heterodyne phase-sensitive dispersion spectrometer at a stronger frequency modulation using direct injection-current dithering

Haojie Zhang
  • Fonction : Auteur
Tao Wu
Weidong Chen
Chenwen Ye
  • Fonction : Auteur
Mengyu Wang
Xingdao He
  • Fonction : Auteur

Résumé

Heterodyne phase-sensitive dispersion spectrometer (HPSDS) retrieves the concentration of gas samples by measuring the refractive index fluctuations near the molecular resonance. Compared to previous HPSDS studies focusing on pure intensity modulation, it is attractive to investigate the performance of HPSDS sensor based on a distributed feedback (DFB) laser under conditions where frequency modulation is much higher than intensity modulation. In this work, we report the implementation of a near-infrared HPSDS for methane detection based on the direct modulation of a DFB laser. The performance of our HPSDS is assessed using the characteristic absorption peak of methane near 1653.7 nm. Long-time measurements show that our HPSDS has a detection limit (MDL) of 1.22 ppm at standard atmospheric pressure and room temperature. In the same experimental conditions, we have experimentally compared HPSDS to wavelength modulation spectroscopy (WMS) to evaluate the dynamical range, long-term stability, and precision limits of the two methods.
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hal-04289266 , version 1 (22-11-2023)

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Haojie Zhang, Tao Wu, Qiang Wu, Weidong Chen, Chenwen Ye, et al.. Methane detection with a near-infrared heterodyne phase-sensitive dispersion spectrometer at a stronger frequency modulation using direct injection-current dithering. Optics Express, 2023, 31 (15), pp.25070. ⟨10.1364/OE.495581⟩. ⟨hal-04289266⟩
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