DocumentCode :
1085415
Title :
Practical design of double-clad ytterbium-doped fiber amplifiers using Giles parameters
Author :
Brunet, François ; Taillon, Yves ; Galarneau, Pierre ; LaRochelle, Sophie
Author_Institution :
INO, Quebec, Que., Canada
Volume :
40
Issue :
9
fYear :
2004
Firstpage :
1294
Lastpage :
1300
Abstract :
We present a simple and accurate method for measuring the Giles parameters of a double-clad ytterbium-doped fiber. The characterization is performed by cut-back on the doped fiber under constant pumping. Using nonlinear curve-fitting of the amplified spontaneous emission (ASE) power-density spectra, along with iterative solution of the photon balance model, we compute both the small-signal gain at complete population inversion and the small-signal absorption of the fiber. The method successfully predicts the extraction efficiency of an amplifier operating at 1064 nm. The ratio between the signal power and the out-of-band ASE power at the output of the amplifier is also accurately predicted by introducing spurious feedback from the fiber facets in the photon balance model. This work shows that a fiber facet reflectivity of a few thousandths of a percent (-40 to -50) dB can significantly enhance the out-of-band ASE power.
Keywords :
iterative methods; optical design techniques; optical feedback; optical fibre amplifiers; optical fibre cladding; optical pumping; population inversion; reflectivity; superradiance; ytterbium; 1064 nm; Giles parameters; amplified spontaneous emission power-density spectra; constant pumping; double-clad ytterbium-doped fiber amplifiers; extraction efficiency; fiber facet reflectivity; iterative solution; nonlinear curve-fitting; optical feedback; photon balance model; population inversion; small-signal absorption; Curve fitting; Doped fiber amplifiers; Fiber lasers; Laser mode locking; Optical feedback; Optical fiber amplifiers; Optical fiber devices; Optical fibers; Pulse amplifiers; Semiconductor process modeling; Modeling; optical feedback; optical fiber amplifiers; ytterbium;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2004.833223
Filename :
1327779
Link To Document :
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