Title :
Optical feedback on self-pulsating semiconductor lasers
Author :
van Tartwijk, Guido H M ; Miguel, Maxi San
Author_Institution :
Dept. de Fisica, Univ. de les Illes Balears, Palma de Mallorca, Spain
fDate :
7/1/1996 12:00:00 AM
Abstract :
Weak optical-feedback effects on the statistical properties of self-pulsations in narrow-stripe semiconductor lasers are analyzed using Lang-Kobayashi-type equations. The self-pulsation features are compared with the characteristics of excited relaxation oscillations. We determine the operating regime in which the randomizing effect of spontaneous-emission noise destroys pulse coherence. In this regime, only phase-insensitive effects of optical feedback are possible, and optimum jitter reduction is achieved with delay times of the order of an integer-odd multiple of the free-running pulsation period. In the high-pump operating regime, interpulse coherence is retained and the optical-feedback phase is shown to be instrumental for pulse-jitter control. Our results show that for cavity lengths up to 10 cm, variations on the order of half an optical wavelength induce jitter variations of one order of magnitude
Keywords :
jitter; laser feedback; laser noise; laser theory; oscillations; semiconductor device models; semiconductor lasers; spontaneous emission; statistical analysis; Lang-Kobayashi-type equations; delay times; excited relaxation oscillations; free-running pulsation period; high-pump operating regime; integer-odd multiple; interpulse coherence; laser cavity lengths; narrow-stripe semiconductor lasers; operating regime; optical feedback; optical-feedback phase; optimum jitter reduction; phase-insensitive effects; pulse coherence; pulse-jitter control; randomizing effect; self-pulsating semiconductor lasers; self-pulsations; spontaneous-emission noise; statistical properties; weak optical-feedback effects; Equations; Jitter; Laser excitation; Laser feedback; Laser noise; Optical feedback; Optical noise; Optical pulses; Semiconductor device noise; Semiconductor lasers;
Journal_Title :
Quantum Electronics, IEEE Journal of