Title :
Uni-directional time-domain bulk SOA Simulator considering carrier depletion by amplified spontaneous emission
Author :
Gutiérrez-Castrejón, Ramón ; Duelk, Marcus
Author_Institution :
Inst. of Eng., Univ. Nacional Autonoma de Mexico, Coyoacan, Mexico
fDate :
6/1/2006 12:00:00 AM
Abstract :
A novel and comprehensive model for semiconductor optical amplifiers (SOAs) to be used in high bit rate (10-160 Gb/s) optical communication systems is presented. Its uni-directional and time-domain character makes it very appropriate to be efficiently integrated in a high-level systems simulator, as is explained through a comprehensive comparison and classification of prominent SOA models/simulators. Despite its fast execution time, the corresponding SOA simulator accurately considers a manifold of ultra-fast nonlinear effects and dynamics and, for the first time within a uni-directional simulator, the impact of amplified spontaneous emission (ASE) on the carrier dynamics. According to the numerical results here presented, the latter effect is fundamental in the simulation of SOAs longer than 0.5 mm.
Keywords :
nonlinear optics; optical communication equipment; optical fibre communication; semiconductor device models; semiconductor optical amplifiers; superradiance; 10 to 160 Gbit/s; SOA models; amplified spontaneous emission; bulk SOA simulator; carrier depletion; carrier dynamics; high bit rate optical communication systems; high-level systems simulator; semiconductor optical amplifiers; time-domain SOA simulator; ultrafast nonlinear effects; unidirectional SOA simulator; Bit rate; Mathematical model; Optical buffering; Optical devices; Optical fiber communication; Optical signal processing; Optical wavelength conversion; Semiconductor optical amplifiers; Spontaneous emission; Time domain analysis; Gain; mathematical model; recovery time; semiconductor optical amplifier; wavelength conversion;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2006.874063