DocumentCode :
106670
Title :
Extremum-Seeking Control of a Mode-Locked Laser
Author :
Brunton, Steven L. ; Xing Fu ; Kutz, J. Nathan
Author_Institution :
Dept. of Appl. Math., Univ. of Washington, Seattle, WA, USA
Volume :
49
Issue :
10
fYear :
2013
fDate :
Oct. 2013
Firstpage :
852
Lastpage :
861
Abstract :
An adaptive controller is demonstrated that is capable of both obtaining and maintaining high-energy, single-pulse states in a mode-locked fiber laser. In particular, a multi-parameter extremum-seeking control (ESC) algorithm is used on a nonlinear polarization rotation (NPR) based laser using waveplate and polarizer angles to achieve optimal passive mode-locking despite large disturbances to the system. The physically realizable objective function introduced divides the energy output by the kurtosis of the pulse spectrum, thus balancing the total energy with the coherence of the mode-locked solution. In addition, its peaks are high-energy mode-locked states that have a safety margin near parameter regimes where mode-locking breaks down or the multipulsing instability occurs. The ESC is demonstrated by numerical simulations of a single-NPR mode-locked laser and is able to track locally maximal mode-locked states despite significant disturbances to parameters such as the fiber birefringence.
Keywords :
adaptive control; fibre lasers; laser accessories; laser mode locking; multivariable control systems; optical fibre polarisation; optical polarisers; optical retarders; optical variables control; adaptive controller; extremum seeking control; fiber birefringence; fiber laser; high-energy mode-locked state; high-energy state; mode locked laser; multiparameter extremum-seeking control algorithm; nonlinear polarization rotation; polarizer angle; single-pulse state; waveplate angle; Adaptation models; Cavity resonators; Laser feedback; Laser mode locking; Laser theory; Linear programming; Nonlinear optics; Mode locked laser; adaptive control; extremum seeking control; feedback control; fiber laser; nonlinear polarization rotation;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2013.2280181
Filename :
6588363
Link To Document :
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