DocumentCode
3329516
Title
Absorption spectroscopy by diode laser tuning and fibre optic sensor of evanescent waves for gas detection application
Author
Zaatar, Y. ; Zaouk, D. ; Bechara, J. ; Khoury, A. ; Ajaka, M. ; Llinares, C. ; Charles, J.-P.
Author_Institution
Fac. des Sci., Libanaise Univ., Jdeidet, Lebanon
fYear
2000
fDate
2000
Firstpage
140
Lastpage
144
Abstract
This paper discusses the development of a new technique for atmospheric pollution detection using an infrared laser coupled to a fibre optic sensor. We have developed a laboratory apparatus for detection of certain important pollutants. The authors have demonstrated the feasibility of the apparatus with commercially combusted materials. The construction of a portable and cheap industrial prototype is envisaged. The experimental work has revealed several difficulties to be overcome before this objective is reached, in particular the control and stability of the laser emissions used. The system was coupled to fibre optic sensors but their feasibility is insufficient. A metallic thin film deposited oil the fibre sensor permits reinforcement of the penetration of the evanescent waves in the exterior medium using the effect of surface plasma resonance. Also realised was the modal selection with the aid of a fibre with an integrated Bragg system. It remains to be seen if the cost and the complexity of the system will be compatible with a commercial prototype
Keywords
air pollution measurement; atmospheric measuring apparatus; atmospheric techniques; laser beam applications; absorption spectroscopy; air pollution; atmosphere; diode laser; fibre optic sensor; infrared laser; laser instrument; measurement technique; spectral absorption; Absorption; Diode lasers; Environmentally friendly manufacturing techniques; Fiber optics; Industrial pollution; Infrared detectors; Laser tuning; Optical fiber sensors; Optical tuning; Spectroscopy;
fLanguage
English
Publisher
ieee
Conference_Titel
Environment and Solar, 2000 Mediterranean Conference for
Conference_Location
Beirut
Print_ISBN
0-7803-7117-8
Type
conf
DOI
10.1109/CMPLES.2000.939882
Filename
939882
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