Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong

In the recent decades, optical fibre sensors have become more reputational due to the fact that they are small in size, robust, light weight, immune to electromagnetic field and able to multiplex. This research report presents a nonlinear output response of an acousto-optically modulated distributed...

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Auteur principal: Diong, Shirley Chea Fong
Format: Thèse
Publié: 2014
Sujets:
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author Diong, Shirley Chea Fong
author_facet Diong, Shirley Chea Fong
author_sort Diong, Shirley Chea Fong
description In the recent decades, optical fibre sensors have become more reputational due to the fact that they are small in size, robust, light weight, immune to electromagnetic field and able to multiplex. This research report presents a nonlinear output response of an acousto-optically modulated distributed Bragg reflector (DBR). DBR used in this project is fabricated from two fibre Bragg gratings (FBGs) with similar Bragg wavelength, high reflectivity and slightly different bandwidth and a 12cm erbium-doped optical fibre. This structure of DBR is able to provide good throughput power. When impinged with acoustic waves, DBR gave an astounding result over the frequency range of 130 kHz to 190 kHz and power density of the ultrasound signal. The distorted output signal observed in the experiment matches the theoretical calculations based on transfer matrix method perfectly. Also, it is discovered that the distorted output signal generates second harmonic components. At higher amplitudes, amplitude of generated second harmonic will supersede the fundamental frequency. This finding is important for understanding the acousto-optic behaviour of DBR.
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institution Universiti Malaya
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spelling oai:studentsrepo.um.edu.my:48242015-03-04T03:58:44Z Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong Diong, Shirley Chea Fong Q Science (General) QC Physics In the recent decades, optical fibre sensors have become more reputational due to the fact that they are small in size, robust, light weight, immune to electromagnetic field and able to multiplex. This research report presents a nonlinear output response of an acousto-optically modulated distributed Bragg reflector (DBR). DBR used in this project is fabricated from two fibre Bragg gratings (FBGs) with similar Bragg wavelength, high reflectivity and slightly different bandwidth and a 12cm erbium-doped optical fibre. This structure of DBR is able to provide good throughput power. When impinged with acoustic waves, DBR gave an astounding result over the frequency range of 130 kHz to 190 kHz and power density of the ultrasound signal. The distorted output signal observed in the experiment matches the theoretical calculations based on transfer matrix method perfectly. Also, it is discovered that the distorted output signal generates second harmonic components. At higher amplitudes, amplitude of generated second harmonic will supersede the fundamental frequency. This finding is important for understanding the acousto-optic behaviour of DBR. 2014 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/4824/1/FIBRE_BRAGG_GRATING_VIBRATION_SENSING_SYSTEM.pdf Diong, Shirley Chea Fong (2014) Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong. Masters thesis, University of Malaya. http://studentsrepo.um.edu.my/4824/
spellingShingle Q Science (General)
QC Physics
Diong, Shirley Chea Fong
Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong
title Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong
title_full Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong
title_fullStr Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong
title_full_unstemmed Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong
title_short Fibre Bragg grating vibration sensing system / Shirley Diong Chea Fong
title_sort fibre bragg grating vibration sensing system shirley diong chea fong
topic Q Science (General)
QC Physics
url-record http://studentsrepo.um.edu.my/4824/
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