Title :
Nonlinear State–Space Model of Semiconductor Optical Amplifiers With Gain Compression for System Design and Analysis
Author :
Kuntze, Scott B. ; Zilkie, Aaron J. ; Pavel, Lacra ; Aitchison, J.Stewart
Author_Institution :
Dept. of Electr. & Comput. Eng., Toronto Univ., Toronto, ON
fDate :
7/15/2008 12:00:00 AM
Abstract :
In this paper, we derive a new analytical state-space model for semiconductor optical amplifier (SOA) dynamics with nonlinear gain compression. We show that a multichannel closed-form state-space model is possible with polynomial gain compression and position-independent carrier density. The compressed model is significantly more accurate than existing noncompressed models as demonstrated by comparison with pump-probe experiments: response magnitude and recovery time are more accurately modeled with explicit gain compression. We then apply the model to design an optical feedback controller that regulates the total optical power at the output of a gain-compressed SOA.
Keywords :
gain control; laser feedback; nonlinear optics; optical control; optical crosstalk; semiconductor optical amplifiers; nonlinear gain compression; nonlinear state space model; optical feedback controller; polynomial gain compression; position independent carrier density; semiconductor optical amplifiers; system design; Analytical models; Charge carrier density; Nonlinear dynamical systems; Optical control; Optical design; Optical feedback; Polynomials; Power system modeling; Semiconductor optical amplifiers; System analysis and design; Gain control; optical control; optical crosstalk; optical feedback; optical pulse measurements; power control; semiconductor optical amplifiers; state–space methods;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2008.922212