Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser

Multi-wavelength fiber lasers operating in the long-wavelength band (L-band) wavelength region are needed as laser source for applications such as wavelengthdivision- multiplexed (WDM) communication systems, fiber sensors, spectroscopy and optical fiber gyroscopes. Multi-wavelength fiber lasers...

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主要作者: Haddud, Tarak Ali
格式: Thesis
语言:English
出版: 2006
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spelling my-upm-ir.59562022-02-17T03:07:57Z Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser 2006-05 Haddud, Tarak Ali Multi-wavelength fiber lasers operating in the long-wavelength band (L-band) wavelength region are needed as laser source for applications such as wavelengthdivision- multiplexed (WDM) communication systems, fiber sensors, spectroscopy and optical fiber gyroscopes. Multi-wavelength fiber lasers are emerging as attractive alternative technologies for wavelength-selectable WDM. They are used as source for direct compatibility with the fiber-optic transmission medium, excellent amplifying properties of rare-earth doped fibers, Brillouin gain, rapidly continuing progress in novel fiber gain media, maturity and robustness of the laser diode pumps used and availability of fiber-based components The multi-wavelength laser applications of interest to this work have distinct performance requirement. This requirement is the need for wide tunability (the ability to tune the lasing emission through a wide range of wavelengths). In this thesis, the design and development of a multi channel continuous wave Brillouid Erbium L-band fiber laser (BEFL), with novel loop mirror configuration, has been studied experimentally. The design parameters of multi-wavelength fiber laser (launched pump powers, single mode optical fiber lengths and Brillouin wavelengths), the multi wavelength Brillouiderbium linear fiber laser configuration with bi-directional pumping is demonstrated. Throughout this work different lengths of single mode optical fiber with various launched pump powers and Brillouin wavelengths have been examined to extract the optimum output performance of a BEFL. The performance of the BEFL is presented in terms of threshold pump power, output peak power, tuning range and the number of Stokes. This development fiber loop configuration exhibits considerably high performance. Twenty-four of Stokes with 10 nm tuning range and efficient output powers were obtained. Wavelength division multiplexing - Case studies Brillouin scattering - Case studies Erbium - Spectra - Case studies 2006-05 Thesis http://psasir.upm.edu.my/id/eprint/5956/ http://psasir.upm.edu.my/id/eprint/5956/1/FK_2004_68%20IR.pdf text en public masters Universiti Putra Malaysia Wavelength division multiplexing - Case studies Brillouin scattering - Case studies Erbium - Spectra - Case studies Engineering Mahdi, Mohd Adzir
institution Universiti Putra Malaysia
collection PSAS Institutional Repository
language English
advisor Mahdi, Mohd Adzir
topic Wavelength division multiplexing - Case studies
Brillouin scattering - Case studies
Erbium - Spectra - Case studies
spellingShingle Wavelength division multiplexing - Case studies
Brillouin scattering - Case studies
Erbium - Spectra - Case studies
Haddud, Tarak Ali
Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser
description Multi-wavelength fiber lasers operating in the long-wavelength band (L-band) wavelength region are needed as laser source for applications such as wavelengthdivision- multiplexed (WDM) communication systems, fiber sensors, spectroscopy and optical fiber gyroscopes. Multi-wavelength fiber lasers are emerging as attractive alternative technologies for wavelength-selectable WDM. They are used as source for direct compatibility with the fiber-optic transmission medium, excellent amplifying properties of rare-earth doped fibers, Brillouin gain, rapidly continuing progress in novel fiber gain media, maturity and robustness of the laser diode pumps used and availability of fiber-based components The multi-wavelength laser applications of interest to this work have distinct performance requirement. This requirement is the need for wide tunability (the ability to tune the lasing emission through a wide range of wavelengths). In this thesis, the design and development of a multi channel continuous wave Brillouid Erbium L-band fiber laser (BEFL), with novel loop mirror configuration, has been studied experimentally. The design parameters of multi-wavelength fiber laser (launched pump powers, single mode optical fiber lengths and Brillouin wavelengths), the multi wavelength Brillouiderbium linear fiber laser configuration with bi-directional pumping is demonstrated. Throughout this work different lengths of single mode optical fiber with various launched pump powers and Brillouin wavelengths have been examined to extract the optimum output performance of a BEFL. The performance of the BEFL is presented in terms of threshold pump power, output peak power, tuning range and the number of Stokes. This development fiber loop configuration exhibits considerably high performance. Twenty-four of Stokes with 10 nm tuning range and efficient output powers were obtained.
format Thesis
qualification_level Master's degree
author Haddud, Tarak Ali
author_facet Haddud, Tarak Ali
author_sort Haddud, Tarak Ali
title Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser
title_short Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser
title_full Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser
title_fullStr Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser
title_full_unstemmed Design and Development of a Multi-Wavelength Brillouin/Erbium Long-Band Fabry Perot Fiber Laser
title_sort design and development of a multi-wavelength brillouin/erbium long-band fabry perot fiber laser
granting_institution Universiti Putra Malaysia
granting_department Engineering
publishDate 2006
url http://psasir.upm.edu.my/id/eprint/5956/1/FK_2004_68%20IR.pdf
_version_ 1747810516059815936