Title :
Nonlinear dynamics of a directly modulated 1.55 μm InGaAsP distributed feedback semiconductor laser
Author :
Liu, Hai-Feng ; Ngai, Wan Fung
Author_Institution :
Dept. of Electr. & Electron. Eng., Melbourne Univ., Parkville, Vic., Australia
fDate :
6/1/1993 12:00:00 AM
Abstract :
Dynamic characteristics of a directly modulated 1.55-μm InGaAsP distributed-feedback (DFB) semiconductor laser are investigated up to a modulation index of 12. Period doubling, period tripling, period quadrupling, and chaos are observed for the first time. The irregular behavior is examined at various bias current levels and modulation frequencies, and it is found that a possible route to chaos in modulated semiconductor lasers is via period doubling followed by period quadrupling and period tripling. This is attributed to the relatively smaller fraction of the spontaneous emission coupled into the lasing mode, i.e., β factor, of the DFB lasers. This speculation is supported by an experimental measurement of the β factor, which is found to be ten times smaller than that for a Fabry-Perot laser, and further confirmed by a rate equation simulation using the measured β factor
Keywords :
III-V semiconductors; distributed feedback lasers; gallium arsenide; gallium compounds; indium compounds; laser transitions; optical chaos; optical modulation; semiconductor lasers; β factor; 1.55 micron; InGaAsP distributed feedback semiconductor laser; bias current levels; chaos; lasing mode; modulated semiconductor lasers; modulation frequencies; modulation index; nonlinear dynamics; period doubling; period quadrupling; period tripling; rate equation simulation; spontaneous emission; Chaotic communication; Distributed feedback devices; Equations; Frequency; Laser feedback; Laser modes; Modulation; Optical coupling; Pump lasers; Semiconductor lasers;
Journal_Title :
Quantum Electronics, IEEE Journal of