Impact of passive EDF length on the performance of linear cavity BEFL
We experimentally demonstrate the impact of a section of passive Erbium doped fiber (EDF) within linear cavity multiwavelength Brillouin Erbium fiber Laser (MBEFL). The influence of such passive EDF section length on the tuning range and the lasing cavity threshold is experimentally presented. The l...
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my.uniten.dspace-300092023-12-29T15:43:58Z Impact of passive EDF length on the performance of linear cavity BEFL Al-Mashhadani T.F. Jamaludin M.Z. Al-Mansoori M.H. Abdullah F. Abass A.K. Ali M.H. 55534252500 57216839721 6505891021 56613644500 35365871700 56510302500 Brillouin-erbium fiber laser Laser tunability Multiwavelength fiber laser Passive erbium doped fiber Stimulated Brillouin scattering Erbium Fiber lasers Stimulated Brillouin scattering Brillouin-erbium fiber lasers Erbium doped fibers Laser tunability Lasing threshold Linear cavity Multi wavelength fiber laser Multiwavelength Tuning ranges Photonics We experimentally demonstrate the impact of a section of passive Erbium doped fiber (EDF) within linear cavity multiwavelength Brillouin Erbium fiber Laser (MBEFL). The influence of such passive EDF section length on the tuning range and the lasing cavity threshold is experimentally presented. The lasing threshold of the MBEFL in case of without and with different passive EDF2 section lengths is presented. A comparison is made between the traditional linear BEFL cavity and the BEFL cavity that utilized different passive EDF lengths of 1m, 3m, and Sm. Different 1480 pump power range (25-150) mW is used in the investigated study. The proposed configuration show significant increment in the tuning range for all passive EDF2 lengths as compared to the conventional BEFL cavity. Sm of passive EDF2 length exhibits higher tuning range of about 28nm at 100mW as compared to the 24.4nm tuning range at the same 1480 pump power using 1m of passive EDF2. All passive EDF2 lengths were compared in term of tuning range at different 1480 pump power range (25-150) mW. � 2013 IEEE. Final 2023-12-29T07:43:58Z 2023-12-29T07:43:58Z 2013 Conference paper 10.1109/ICP.2013.6687099 2-s2.0-84893550842 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84893550842&doi=10.1109%2fICP.2013.6687099&partnerID=40&md5=663a5ba3eda92572a22b5a8e2990b2b7 https://irepository.uniten.edu.my/handle/123456789/30009 6687099 157 159 Scopus |
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Brillouin-erbium fiber laser Laser tunability Multiwavelength fiber laser Passive erbium doped fiber Stimulated Brillouin scattering Erbium Fiber lasers Stimulated Brillouin scattering Brillouin-erbium fiber lasers Erbium doped fibers Laser tunability Lasing threshold Linear cavity Multi wavelength fiber laser Multiwavelength Tuning ranges Photonics |
spellingShingle |
Brillouin-erbium fiber laser Laser tunability Multiwavelength fiber laser Passive erbium doped fiber Stimulated Brillouin scattering Erbium Fiber lasers Stimulated Brillouin scattering Brillouin-erbium fiber lasers Erbium doped fibers Laser tunability Lasing threshold Linear cavity Multi wavelength fiber laser Multiwavelength Tuning ranges Photonics Al-Mashhadani T.F. Jamaludin M.Z. Al-Mansoori M.H. Abdullah F. Abass A.K. Ali M.H. Impact of passive EDF length on the performance of linear cavity BEFL |
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We experimentally demonstrate the impact of a section of passive Erbium doped fiber (EDF) within linear cavity multiwavelength Brillouin Erbium fiber Laser (MBEFL). The influence of such passive EDF section length on the tuning range and the lasing cavity threshold is experimentally presented. The lasing threshold of the MBEFL in case of without and with different passive EDF2 section lengths is presented. A comparison is made between the traditional linear BEFL cavity and the BEFL cavity that utilized different passive EDF lengths of 1m, 3m, and Sm. Different 1480 pump power range (25-150) mW is used in the investigated study. The proposed configuration show significant increment in the tuning range for all passive EDF2 lengths as compared to the conventional BEFL cavity. Sm of passive EDF2 length exhibits higher tuning range of about 28nm at 100mW as compared to the 24.4nm tuning range at the same 1480 pump power using 1m of passive EDF2. All passive EDF2 lengths were compared in term of tuning range at different 1480 pump power range (25-150) mW. � 2013 IEEE. |
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55534252500 |
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55534252500 Al-Mashhadani T.F. Jamaludin M.Z. Al-Mansoori M.H. Abdullah F. Abass A.K. Ali M.H. |
format |
Conference paper |
author |
Al-Mashhadani T.F. Jamaludin M.Z. Al-Mansoori M.H. Abdullah F. Abass A.K. Ali M.H. |
author_sort |
Al-Mashhadani T.F. |
title |
Impact of passive EDF length on the performance of linear cavity BEFL |
title_short |
Impact of passive EDF length on the performance of linear cavity BEFL |
title_full |
Impact of passive EDF length on the performance of linear cavity BEFL |
title_fullStr |
Impact of passive EDF length on the performance of linear cavity BEFL |
title_full_unstemmed |
Impact of passive EDF length on the performance of linear cavity BEFL |
title_sort |
impact of passive edf length on the performance of linear cavity befl |
publishDate |
2023 |
_version_ |
1806426616236081152 |