Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power

We demonstrate a simple design to enhance the performance of a multiwavelength Brillouin-Raman fiber laser by capturing the residual Raman pump power (RPP) from the laser cavity using a wavelength-selective coupler. The performance parameters of the laser system are investigated and compared with th...

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Main Authors: Abass A.K., Al-Mansoori M.H., Jamaludin M.Z., Abdullah F., Al-Mashhadani T.F., Ali M.H.
Other Authors: 35365871700
Format: Article
Published: OSA - The Optical Society 2023
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spelling my.uniten.dspace-218732023-05-16T10:45:49Z Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power Abass A.K. Al-Mansoori M.H. Jamaludin M.Z. Abdullah F. Al-Mashhadani T.F. Ali M.H. 35365871700 6505891021 57216839721 56613644500 55534252500 56510302500 We demonstrate a simple design to enhance the performance of a multiwavelength Brillouin-Raman fiber laser by capturing the residual Raman pump power (RPP) from the laser cavity using a wavelength-selective coupler. The performance parameters of the laser system are investigated and compared with the conventional design under the same input design parameters. Both laser systems at a RPP of 375 mW can generate up to 33 Stokes lines with an equal channel spacing of 0.08 nm; however, the tunability of the laser without injection of residual RPP is 25% higher than the conventional laser structure. In addition, for a laser system without residual RPP injection, increasing the RPP improves the laser performance and generates up to 42 Stokes lines with a tunability of 24.5 nm, from 1570 to 1594.5 nm, at 475mW. In contrast, the laser system with a residual RPP has the worst performance as the pump power is increased, and generates only nine Stokes lines with a tuning range of 5 nm at the same RPP of 475 mW. © 2014 Optical Society of America. Final 2023-05-16T02:45:49Z 2023-05-16T02:45:49Z 2014 Article 10.1364/AO.53.005187 2-s2.0-84942369021 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84942369021&doi=10.1364%2fAO.53.005187&partnerID=40&md5=c321efb73ca38f9c08de2ba7060a1921 https://irepository.uniten.edu.my/handle/123456789/21873 23 5187 5192 OSA - The Optical Society Scopus
institution Universiti Tenaga Nasional
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description We demonstrate a simple design to enhance the performance of a multiwavelength Brillouin-Raman fiber laser by capturing the residual Raman pump power (RPP) from the laser cavity using a wavelength-selective coupler. The performance parameters of the laser system are investigated and compared with the conventional design under the same input design parameters. Both laser systems at a RPP of 375 mW can generate up to 33 Stokes lines with an equal channel spacing of 0.08 nm; however, the tunability of the laser without injection of residual RPP is 25% higher than the conventional laser structure. In addition, for a laser system without residual RPP injection, increasing the RPP improves the laser performance and generates up to 42 Stokes lines with a tunability of 24.5 nm, from 1570 to 1594.5 nm, at 475mW. In contrast, the laser system with a residual RPP has the worst performance as the pump power is increased, and generates only nine Stokes lines with a tuning range of 5 nm at the same RPP of 475 mW. © 2014 Optical Society of America.
author2 35365871700
author_facet 35365871700
Abass A.K.
Al-Mansoori M.H.
Jamaludin M.Z.
Abdullah F.
Al-Mashhadani T.F.
Ali M.H.
format Article
author Abass A.K.
Al-Mansoori M.H.
Jamaludin M.Z.
Abdullah F.
Al-Mashhadani T.F.
Ali M.H.
spellingShingle Abass A.K.
Al-Mansoori M.H.
Jamaludin M.Z.
Abdullah F.
Al-Mashhadani T.F.
Ali M.H.
Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power
author_sort Abass A.K.
title Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power
title_short Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power
title_full Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power
title_fullStr Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power
title_full_unstemmed Enhancing performance of multiwavelength Brillouin-Raman fiber laser by capturing residual pump power
title_sort enhancing performance of multiwavelength brillouin-raman fiber laser by capturing residual pump power
publisher OSA - The Optical Society
publishDate 2023
_version_ 1806424097474740224
score 13.223943