DocumentCode
48269
Title
Chaotic Time-Delay Signature Suppression in a Semiconductor Laser With Frequency-Detuned Grating Feedback
Author
Song-Sui Li ; Sze-Chun Chan
Author_Institution
Dept. of Electron. Eng., City Univ. of Hong Kong, Hong Kong, China
Volume
21
Issue
6
fYear
2015
fDate
Nov.-Dec. 2015
Firstpage
1
Lastpage
12
Abstract
Chaotic dynamics of a semiconductor laser subject to optical feedback from a frequency-detuned fiber Bragg grating (FBG) is investigated experimentally and numerically. Although the FBG is similar to a mirror in perturbing the laser into chaos, it is not the same as a mirror because it provides spatially distributed reflections. Such distributed reflections effectively suppress the undesirable time-delay signature (TDS) contained in the autocorrelation function of the chaotic intensity time-series. The investigation shows that the best suppression of TDS is attained when the FBG is positively detuned from the free-running laser frequency. The TDS suppression is due to dispersion at frequencies near an edge of the main lobe of the FBG reflectivity spectrum. The suppression prefers the FBG at a positive detuning frequency because the laser cavity is red-shifted by the antiguidance effect. Numerically, the dynamical behavior is mapped in the parameter space of detuning frequency and feedback strength, where wide regions of chaos are identified. Experimentally, the TDS suppression by FBG feedback is demonstrated for the first time. The positively detuned FBG suppresses the TDS by over ten times to below 0.04 in the experiments.
Keywords
Bragg gratings; laser cavity resonators; laser feedback; optical chaos; optical fibres; red shift; reflectivity; semiconductor lasers; FBG reflectivity spectrum; antiguidance effect; chaotic dynamics; chaotic time-delay signature suppression; dynamical behavior; feedback strength; free-running laser frequency; frequency-detuned fiber Bragg grating; frequency-detuned grating feedback; laser cavity; optical feedback; red shift; semiconductor laser; spatially distributed reflections; Chaos; Delays; Fiber gratings; Laser feedback; Optical feedback; Semiconductor lasers; Optical chaos; fiber Bragg grating; semiconductor laser; time-delay signature;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2015.2427521
Filename
7097638
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