Verlagslink DOI: 10.3390/s24134085
Titel: Quartz enhanced photoacoustic spectroscopy on solid samples
Sprache: Englisch
Autorenschaft: Falkhofen, Judith 
Bahr, Marc-Simon  
Baumann, Bernd  
Wolff, Marcus  
Herausgeber*In: Jiang, Xiaoning 
Choa, Fow-Sen 
Schlagwörter: FE-simulation; higher harmonics; IR; MEMS microphone; photoacoustic spectroscopy; QEPAS; resonator design; solid samples; ultrasound
Erscheinungsdatum: 24-Jun-2024
Verlag: MDPI
Zeitschrift oder Schriftenreihe: Sensors 
Zeitschriftenband: 24
Zeitschriftenausgabe: 13
Zusammenfassung: 
Quartz-Enhanced Photoacoustic Spectroscopy (QEPAS) is a technique in which the sound wave is detected by a quartz tuning fork (QTF). It enables particularly high specificity with respect to the excitation frequency and is well known for an extraordinarily sensitive analysis of gaseous samples. We have developed the first photoacoustic (PA) cell for QEPAS on solid samples. Periodic heating of the sample is excited by modulated light from an interband cascade laser (ICL) in the infrared region. The cell represents a half-open cylinder that exhibits an acoustical resonance frequency equal to that of the QTF and, therefore, additionally amplifies the PA signal. The antinode of the sound pressure of the first longitudinal overtone can be accessed by the sound detector. A 3D finite element (FE) simulation confirms the optimal dimensions of the new cylindrical cell with the given QTF resonance frequency. An experimental verification is performed with an ultrasound micro-electromechanical system (MEMS) microphone. The presented frequency-dependent QEPAS measurement exhibits a low noise signal with a high-quality factor. The QEPAS-based investigation of three different solid synthetics resulted in a linearly dependent signal with respect to the absorption.
URI: https://hdl.handle.net/20.500.12738/16570
DOI: 10.48441/4427.2047
ISSN: 1424-8220
Begutachtungsstatus: Diese Version hat ein Peer-Review-Verfahren durchlaufen (Peer Review)
Einrichtung: Heinrich-Blasius-Institut für Physikalische Technologien 
Department Maschinenbau und Produktion 
Fakultät Technik und Informatik 
Dokumenttyp: Zeitschriftenbeitrag
Hinweise zur Quelle: Falkhofen, J.; Bahr, M.-S.; Baumann, B.; Wolff, M. Quartz Enhanced Photoacoustic Spectroscopy on Solid Samples. Sensors 2024, 24, 4085. https://doi.org/10.3390/s24134085
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