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Parts-per-billion-level detection of hydrogen sulfide based on doubly resonant photoacoustic spectroscopy with line-locking

Academic Article
Publication Date:
2023
abstract:
We report on the development of a highly sensitive hydrogen sulfide (H2S) gas sensor exploiting the doubly resonant photoacoustic spectroscopy technique and using a near-infrared laser emitting at 1578.128 nm. By targeting the R(4) transition of H2S, we achieved a minimum detection limit of 10 part per billion in concen-tration and a normalized noise equivalent absorption coefficient of 8.9 x 10(-12) W cm(-1) Hz(-1/2). A laser-cavity-molecule locking strategy is proposed to enhance the sensor stability for fast measurement when dealing with external disturbances. A comparison among the state-of-the-art H2S sensors using various spectroscopic tech-niques confirmed the record sensitivity achieved in this work.
Iris type:
01.01 Articolo in rivista
Keywords:
Photoacoustic spectroscopy; Cavity-enhanced spectroscopy; Hydrogen sulfide; Trace gas detection; Molecular absorption line locking
List of contributors:
Wang, Zhen; DE NATALE, Paolo; Borri, Simone; Galli, Iacopo
Authors of the University:
BORRI SIMONE
DE NATALE PAOLO
GALLI IACOPO
Handle:
https://iris.cnr.it/handle/20.500.14243/463372
Published in:
PHOTOACOUSTICS
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S221359792200101X?via%3Dihub
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