Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications

There is a great deal of interest in monitoring atmospheric greenhouse gases such as methane. Although distributed feedback edge-emitting lasers are often used for atmospheric detection, the development of the vertical cavity surface-emitting laser (VCSEL) has allowed for an alternative source. The...

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Bibliographic Details
Main Author: Dzikowski, Matthew
Other Authors: Tulip, John (Electrical and Computer Engineering)
Format: Others
Language:en
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10048/714
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-AEU.10048-7142012-03-21T22:50:08ZTulip, John (Electrical and Computer Engineering)Dzikowski, Matthew2009-10-01T21:39:29Z2009-10-01T21:39:29Z2009-10-01T21:39:29Zhttp://hdl.handle.net/10048/714There is a great deal of interest in monitoring atmospheric greenhouse gases such as methane. Although distributed feedback edge-emitting lasers are often used for atmospheric detection, the development of the vertical cavity surface-emitting laser (VCSEL) has allowed for an alternative source. The VCSEL exhibits several advantages over distributed feedback (DFB), edge-emitting lasers, especially in terms of power requirements and tuning capabilities. A second harmonic spectroscopy system based on a VCSEL laser is presented. Battery operation of the driver, temperature control and receiver is achieved. The system is used to detect methane gas in open path situations, as well as in gas cylinders. Temperature and current scanning are compared as methods for laser wavelength modulation. Mathematical methods for characterizing and filtering absorption signals are investigated. The receiver system is also used with a DFB laser to compare performance with the VCSEL. A software receiver using LabVIEW is implemented, and its performance is compared with the hardware designs. A minimum detectable limit of 1.4 ppmm of methane for the hardware receiver is reported.4916449 bytesapplication/pdfenspectroscopyVCSELsecond harmonic detectionSpectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applicationsThesisMaster of ScienceMaster'sElectrical and Computer EngineeringUniversity of Alberta2009-11Photonics and PlasmasTulip, John (ECE)Tsui, Ying (ECE)Jaeger, Wolfgang (Chemistry)
collection NDLTD
language en
format Others
sources NDLTD
topic spectroscopy
VCSEL
second harmonic detection
spellingShingle spectroscopy
VCSEL
second harmonic detection
Dzikowski, Matthew
Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
description There is a great deal of interest in monitoring atmospheric greenhouse gases such as methane. Although distributed feedback edge-emitting lasers are often used for atmospheric detection, the development of the vertical cavity surface-emitting laser (VCSEL) has allowed for an alternative source. The VCSEL exhibits several advantages over distributed feedback (DFB), edge-emitting lasers, especially in terms of power requirements and tuning capabilities. A second harmonic spectroscopy system based on a VCSEL laser is presented. Battery operation of the driver, temperature control and receiver is achieved. The system is used to detect methane gas in open path situations, as well as in gas cylinders. Temperature and current scanning are compared as methods for laser wavelength modulation. Mathematical methods for characterizing and filtering absorption signals are investigated. The receiver system is also used with a DFB laser to compare performance with the VCSEL. A software receiver using LabVIEW is implemented, and its performance is compared with the hardware designs. A minimum detectable limit of 1.4 ppmm of methane for the hardware receiver is reported. === Photonics and Plasmas
author2 Tulip, John (Electrical and Computer Engineering)
author_facet Tulip, John (Electrical and Computer Engineering)
Dzikowski, Matthew
author Dzikowski, Matthew
author_sort Dzikowski, Matthew
title Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
title_short Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
title_full Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
title_fullStr Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
title_full_unstemmed Spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
title_sort spectroscopy of methane using a vertical cavity surface-emitting laser system with emphasis on development for portable applications
publishDate 2009
url http://hdl.handle.net/10048/714
work_keys_str_mv AT dzikowskimatthew spectroscopyofmethaneusingaverticalcavitysurfaceemittinglasersystemwithemphasisondevelopmentforportableapplications
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