DocumentCode :
1129913
Title :
Analytical model for rare-earth-doped fiber amplifiers and lasers
Author :
Barnard, C. ; Myslinski, P. ; Chrostowski, J. ; Kavehrad, M.
Author_Institution :
Inst. for Inf. Technol., Nat. Res. Council of Canada, Ottawa, Ont., Canada
Volume :
30
Issue :
8
fYear :
1994
fDate :
8/1/1994 12:00:00 AM
Firstpage :
1817
Lastpage :
1830
Abstract :
An analytical model for two-, three-, and four-level system rare-earth-doped fiber amplifiers and lasers is presented. The theory is applicable to dopants such as erbium, neodymium, thulium; praseodymium, and ytterbium. Fiber-amplifier gain is expressed in terms of attenuation coefficients, intrinsic saturation powers, and cross-saturation powers at the pump and signal wavelengths. These parameters can be directly determined from one- and two-beam fiber-transmission measurements. System-independent formulas are given for the slopes and thresholds of ring and linear fiber lasers. Good agreement between theory and experiment has been shown for erbium-doped fiber amplifiers and lasers and thulium-doped fiber lasers. Because of the finite-pump-level lifetime, three- and four-level models predict a flattening of the fiber laser slope at higher pumping powers when the fiber is shorter than the optimum length. Approximate system-independent solutions are also given for fiber amplifiers with excited-state absorption at either the pump or signal wavelengths. A novel technique, requiring only one tunable light source, is proposed for finding the best pump wavelength when pump ESA is present. The two-level analytical model recently developed for erbium-doped fibers is a special case of this theory
Keywords :
erbium; fibre lasers; laser theory; modelling; neodymium; optical pumping; praseodymium; rare earth metals; ring lasers; thulium; ytterbium; approximate system-independent solutions; attenuation coefficients; cross-saturation powers; excited-state absorption; fiber laser slope; fiber-amplifier gain; finite-pump-level lifetime; four-level system rare-earth-doped fiber amplifiers; intrinsic saturation powers; linear fiber lasers; pump wavelengths; pumping powers; rare-earth-doped fiber lasers; ring fiber lasers; signal wavelengths; system-independent formulas; three-level system; thresholds; tunable light source; two-beam fiber-transmission measurements; two-level analytical model; Analytical models; Erbium; Erbium-doped fiber lasers; Fiber lasers; Laser excitation; Laser modes; Laser theory; Optical fiber theory; Pump lasers; Ring lasers;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.301646
Filename :
301646
Link To Document :
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