Optimization of Output Coupling Ratio for Multi-Wavelength Brillouin Fiber Laser Employing FBG and DCF as Gain Medium
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Published:2016-05
Issue:
Volume:857
Page:608-612
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ISSN:1662-9752
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Container-title:Materials Science Forum
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language:
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Short-container-title:MSF
Author:
Malek A. Zakiah1,
Ariffin S. Nursyamimi1,
Ahmad Hambali N.A.M.2,
Wahid M.H.A.1,
Shahimin M.M.1,
Azidin M.A.M.2,
Isa Siti S. Mat1
Affiliation:
1. Universiti Malaysia Perlis
2. Universiti Malaysia Perlis (UniMAP)
Abstract
A ring-cavity multi-wavelength Brillouin fiber laser by employing a fiber Bragg grating and dispersion compensating fiber was experimentally demonstrated. The multi-wavelength Brillouin fiber laser has been analyzed at different output coupling ratios at 1550 nm of Brillouin pump wavelength. A ring-cavity multi-wavelength Brillouin fiber laser has been designed with a 16 km long of dispersion compensating fiber which acts as gain medium for stimulated Brillouin scattering effect. Dispersion compensating fiber is designed to have small core size and has higher nonlinear coefficient. As a result, 8 Brillouin Stokes signals were produced at maximum Brillouin power of 21 dBm and output coupling ratio of 80%. The best performance of output coupling ratio was determined by 70% with the highest of signal to noise ratio at 38.39 dB.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Cited by
1 articles.
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1. Dispersion compensating fiber with Brillouin fiber laser generation;2023 Al-Sadiq International Conference on Communication and Information Technology (AICCIT);2023-07-04