DocumentCode :
927491
Title :
A Monolithic MQW InP–InGaAsP-Based Optical Comb Generator
Author :
Renaud, Cyril C. ; Pantouvaki, Marianna ; Grégoire, Sylvie ; Lealman, Ian ; Cannard, Paul ; Cole, Simon ; Moore, Ron ; Gwilliam, Russell ; Seeds, Alwyn J.
Author_Institution :
Univ. Coll. London, London
Volume :
43
Issue :
11
fYear :
2007
Firstpage :
998
Lastpage :
1005
Abstract :
We report the first demonstration of a monolithic optical-frequency comb generator. The device is based on multisection quaternary/quaternary eight-quantum-well InP-InGaAsP material in a frequency-modulated (FM) laser design. The modulation is generated using quantum-confined Stark-effect phase-induced refractive index modulation to achieve fast modulation up to 24.4 GHz. The laser was fabricated using a single epitaxial growth step and quantum-well intermixing to realize low-loss phase adjustment and modulation sections. The output was quasicontinuous wave with intensity modulation at less than 20% for a total output power of 2 mW. The linewidth of each line was limited by the linewidth of the free running laser at an optimum of 25 MHz full-width at half-maximum. The comb generator produces a number of lines with a spacing exactly equal to the modulation frequency (or a multiple of it), differential phase noise between adjacent lines of -82 dBc/Hz at 1-kHz offset (modulation source-limited), and a potential comb spectrum width of up to 2 THz (15 nm), though the comb spectrum was not continuous across the full span.
Keywords :
III-V semiconductors; epitaxial growth; frequency modulation; gallium arsenide; gallium compounds; indium compounds; laser beams; laser noise; optical fabrication; optical materials; optical modulation; phase modulation; phase noise; quantum confined Stark effect; quantum well lasers; refractive index; InP-InGaAsP; differential phase noise; epitaxial growth; free running laser; frequency 2 THz; frequency 24.4 GHz; frequency 25 MHz; frequency-modulated laser design; intensity modulation; laser diode; laser fabrication; monolithic MQW-based optical comb generator; multisection quantum-well material; phase-induced refractive index modulation; power 2 mW; quantum-confined Stark-effect; quantum-well intermixing; quasicontinuous wave; Continuous phase modulation; Frequency modulation; Optical design; Optical materials; Optical modulation; Optical refraction; Optical variables control; Phase modulation; Quantum well devices; Refractive index; Frequency-modulated (FM) laser; laser diode; optical frequency comb generation;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2007.904522
Filename :
4346654
Link To Document :
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