Optimization and complete characterization of a photoacoustic gas detector

We report the complete designing process and realization of a photoacoustic spectrometer. In a first step, the cell design is optimized in order to achieve maximum cell constant and working frequency using a finite element method. Technological and integration constraints are used to define dimensio...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2015-02, Vol.118 (2), p.319-326
Hauptverfasser: Risser, Christophe, Parvitte, Bertrand, Vallon, Raphael, Zeninari, Virginie
Format: Artikel
Sprache:eng
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Zusammenfassung:We report the complete designing process and realization of a photoacoustic spectrometer. In a first step, the cell design is optimized in order to achieve maximum cell constant and working frequency using a finite element method. Technological and integration constraints are used to define dimensional constraints on the cell. In a second step, a dedicated optical bench is presented along with the photoacoustic cell. The resonator response is then measured using a quantum cascade laser for methane detection and condenser microphones as detectors. The system detection limit is also discussed as it depends not only on the cell response but is also a combination of parameters linked together: environmental noise, microphones characteristics and cell conception. The gas flow required in a dynamic operation of the sensor degrades the detection limit regardless of the microphones quality. Choices on cell conception to minimize gas flow noise are discussed.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-014-5988-6