DocumentCode :
1477880
Title :
Laser Parameter Variations in a Rayleigh Scattering-Based Raman Fiber Laser With Single Fiber Bragg Grating Reflector
Author :
Sarmani, A.R. ; Abu Bakar, M.H. ; Adikan, F. R Mahamd ; Mahdi, M.A.
Author_Institution :
Center of Excellence for Wireless & Photonics Networks, Univ. Putra Malaysia, Serdang, Malaysia
Volume :
4
Issue :
2
fYear :
2012
fDate :
4/1/2012 12:00:00 AM
Firstpage :
461
Lastpage :
466
Abstract :
The work presented in this paper details the changes in continuous-wave laser characteristics that were affected by the orientation of pumping separation. The Raman laser was constructed in forward and backward pumping schemes with respect to the 1553.3-nm fiber Bragg grating location. The laser cavity was formed by the induction of Rayleigh backscattering effects in the 51-km fiber length that served as a virtual mirror. From the results obtained, it can be concluded that low threshold operation around 788 mW was satisfied at a coupling ratio of 0 (forward pumping scheme). Moreover, the best output power attainment of 220 mW was realized when 60% of pump powers were delivered via a backward pumping scheme. Thus, the success of this research provides a basis to further understand the principle of backscattered wave interactions along the fiber longitudinal structure.
Keywords :
Bragg gratings; Raman lasers; Rayleigh scattering; backscatter; fibre lasers; laser beams; laser cavity resonators; laser mirrors; optical pumping; Rayleigh backscattering effects; Rayleigh scattering-based Raman fiber laser; backscattered wave interactions; backward pumping schemes; continuous-wave laser characteristics; coupling ratio; fiber length; fiber longitudinal structure; forward pumping schemes; laser cavity; laser parameter variations; low threshold operation; output power attainment; power 220 mW; pumping separation; single fiber Bragg grating reflector; size 51 km; virtual mirror; Cavity resonators; Fiber lasers; Laser excitation; Laser feedback; Photonics; Pump lasers; Stimulated emission; Rayleigh scattering; Stimulated Raman scattering (SRS); fiber laser;
fLanguage :
English
Journal_Title :
Photonics Journal, IEEE
Publisher :
ieee
ISSN :
1943-0655
Type :
jour
DOI :
10.1109/JPHOT.2012.2190925
Filename :
6174422
Link To Document :
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