Title :
Optical spectra of a semiconductor laser with incoherent optical feedback
Author :
Cohen, J.S. ; Wittgrefe, F. ; Hoogerland, Maarten D. ; Woerdman, J.P.
Author_Institution :
Philips Res. Lab., Eindhoven, Netherlands
fDate :
6/1/1990 12:00:00 AM
Abstract :
The spectrum of a semiconductor laser with incoherent feedback from a distant mirror (i.e. the external round-trip time exceeds the coherence time of the laser) is investigated. As the amount of feedback increases the optical spectrum evolves from a central line with enhanced isolated satellite peaks caused by the relaxation oscillation to a very broad (~20 GHz) line, where the relaxation oscillation gives rise to shoulders. Moreover, there is an asymmetry for frequencies above or below the central frequency. This drastic change of the spectrum is also found from a recent theoretical description of a semiconductor laser in the coherence collapsed state. The amount of feedback and the damping rate of the relaxation oscillation are obtained from a fit of the theory to the observed time-autocorrelation function. This analysis reveals, that, owing to incoherent feedback, the damping rate of the relaxation oscillation behaves as an effective damping rate that depends almost linearly on the feedback rate
Keywords :
feedback; laser theory; light coherence; semiconductor junction lasers; spectral line breadth; asymmetric frequencies; central line; coherence collapsed state; coherence time; distant mirror; enhanced isolated satellite peaks; external round-trip time; incoherent feedback; incoherent optical feedback; optical spectrum; relaxation oscillation; semiconductor laser; time-autocorrelation function; Damping; Equations; Fiber lasers; Laser feedback; Laser modes; Laser noise; Laser theory; Mirrors; Optical feedback; Semiconductor lasers;
Journal_Title :
Quantum Electronics, IEEE Journal of