DocumentCode
45001
Title
Design of Radiation-Hardened Rare-Earth Doped Amplifiers Through a Coupled Experiment/Simulation Approach
Author
Girard, S. ; Mescia, L. ; Vivona, M. ; Laurent, A. ; Ouerdane, Y. ; Marcandella, C. ; Prudenzano, F. ; Boukenter, A. ; Robin, T. ; Paillet, P. ; Goiffon, Vincent ; Gaillardin, M. ; Cadier, B. ; Pinsard, E. ; Cannas, M. ; Boscaino, R.
Author_Institution
Lab. Hubert Curien, Univ. de St.-Etienne, St. Etienne, France
Volume
31
Issue
8
fYear
2013
fDate
15-Apr-13
Firstpage
1247
Lastpage
1254
Abstract
We present an approach coupling a limited experimental number of tests with numerical simulations regarding the design of radiation-hardened (RH) rare earth (RE)-doped fiber amplifiers. Radiation tests are done on RE-doped fiber samples in order to measure and assess the values of the principal input parameters requested by the simulation tool based on particle swarm optimization (PSO) approach. The proposed simulation procedure is validated by comparing the calculation results with the measured degradations of two amplifiers made with standard and RH RE-doped optical fibers, respectively. After validation, the numerical code is used to theoretically investigate the influence of some amplifier design parameters on its sensitivity to radiations. Simulations show that the RE-doped fiber length used in the amplifier needs to be adjusted to optimize the amplifier performance over the whole space mission profile rather than to obtain the maximal amplification efficiency before its integration in the harsh environment. By combining this coupled approach with the newly-developed RH RE-doped fibers, fiber-based amplifiers nearly insensitive to space environment may be designed in the future.
Keywords
numerical analysis; optical fibre amplifiers; particle swarm optimisation; radiation hardening (electronics); amplifier design; numerical code; numerical simulations; particle swarm optimization; principal input parameters; radiation tests; radiation-hardened rare earth doped fiber amplifiers design; simulation tool; Attenuation; Erbium; Ions; Optical fiber amplifiers; Optical fiber testing; Radiation effects; Amplifiers; erbium; optical fibers; particle swarm optimization; radiation effects; rare-earth ions; ytterbium;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2013.2245304
Filename
6451093
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