DocumentCode :
791773
Title :
Simple model for a distributed feedback laser integrated with a Mach-Zehnder modulator
Author :
Yu, S.F. ; Ngo, N.Q.
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Volume :
38
Issue :
8
fYear :
2002
fDate :
8/1/2002 12:00:00 AM
Firstpage :
1062
Lastpage :
1074
Abstract :
Presents a time-domain traveling-wave algorithm for the modeling of the large-signal dynamic response of a distributed feedback laser integrated with a Mach-Zehnder (MZ) modulator. The influence of residual optical feedback from the output of the modulator facet on the dynamic frequency chirp is studied. It is found that the difference in frequency chirp between the turn-on and -off states (i.e., adiabatic chirp) of a π/2-shifted 2 ×2 MZ modulator is minimal and is independent of-the residual optical feedback. In addition, it can be shown that the presence of chirped frequency spikes (i.e., transient chirp), due to the change in refractive index as a result of the rapid variation of the bias voltage, can broaden the linewidth and distort the spectrum of the modulated optical signal. Furthermore, the possibility of doubling the modulation frequency of MZ modulators using a dual-arm dual-signal modulation format is investigated.
Keywords :
Mach-Zehnder interferometers; chirp modulation; distributed feedback lasers; electro-optical modulation; integrated optics; laser feedback; laser theory; quantum well lasers; time-domain analysis; InP; Mach-Zehnder modulator; adiabatic chirp; bias voltage; chirped frequency spikes; distributed feedback laser; dual-arm dual-signal modulation format; dynamic frequency chirp; large-signal dynamic response; linewidth; modeling; modulator facet output; multiple-quantum-well p-i-n waveguide; refractive index; residual optical feedback; simple model; single-mode InP MQW DFB laser; time-domain traveling-wave algorithm; transient chirp; turn-off states; turn-on states; Chirp modulation; Distributed feedback devices; Frequency modulation; Laser feedback; Laser modes; Optical distortion; Optical feedback; Optical modulation; Refractive index; Time domain analysis;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2002.800996
Filename :
1021024
Link To Document :
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