DocumentCode :
1116535
Title :
Generation of Tunable Carrier-Suppressed Optical Pulses From a Mode-Locked DBR Laser Diode Operating With Two Carrier-Wavelengths
Author :
Arahira, Shin ; Yaegashi, Hiroki ; Nakamura, Koji ; Ogawa, Yoh
Author_Institution :
Corp. R&D Center, Oki Electr. Ind. Co., Ltd., Tokyo
Volume :
44
Issue :
6
fYear :
2008
fDate :
6/1/2008 12:00:00 AM
Firstpage :
595
Lastpage :
602
Abstract :
We proposed a method to generate pulsewidth-tunable carrier-suppressed (CS) optical pulsetrain from a mode-locked distributed Bragg reflector (DBR) laser diode (LD) operating with two carrier wavelengths. Our new method made it possible to generate the CS pulsetrains with widely tunable duty ratios of both more and less than 0.5 from a single chip of semiconductor device. With theoretical explanation and suggestion on the operation principle, we experimentally demonstrated the tunable CS pulse generation using a monolithic 40-GHz actively mode-locked DBR LD integrated with an electroabsorption modulator. Wide tunability in the pulsewidth from 3 to 16 ps was successfully achieved retaining almost chirp-free conditions. We also succeeded in the asymmetric pulse generation with different rise and fall times by fine tuning of the operating conditions.
Keywords :
distributed Bragg reflector lasers; electro-optical modulation; electroabsorption; laser mode locking; laser tuning; optical pulse generation; semiconductor lasers; DBR laser diode; asymmetric pulse generation; carrier-suppressed optical pulse generation; carrier-suppressed optical pulsetrain; carrier-wavelengths; distributed Bragg reflector laser diode; electroabsorption modulator; laser mode locking; laser tuning; semiconductor device; Chirp modulation; Diode lasers; Distributed Bragg reflectors; Optical pulse generation; Optical pulses; Pulse generation; Pulse modulation; Semiconductor devices; Space vector pulse width modulation; Tunable circuits and devices; Carrier-supressed return-to-zero (CS-RZ) format; long-haul transmission; mode-locked laser diode (MLLD); optical communication networks;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2008.919932
Filename :
4479647
Link To Document :
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