DocumentCode :
1550515
Title :
Densely arrayed eight-wavelength semiconductor lasers fabricated by microarray selective epitaxy
Author :
Kudo, Koji ; Furushima, Yuji ; Nakazaki, Tadashi ; Yamaguchi, Masayuki
Author_Institution :
Opto-Electron. & High Frequency Res. Labs., NEC Corp., Ibaraki, Japan
Volume :
5
Issue :
3
fYear :
1999
Firstpage :
428
Lastpage :
434
Abstract :
This paper describes a novel epitaxial growth technique, called microarray selective epitaxy (MASE), for fabricating extremely small integrated photonic devices. The MASE technique makes it possible to form densely arrayed (pitch <10 μm) multiple-quantum-well (MQW) waveguides without semiconductor etching as well as to control the bandgap energy of each waveguide. The technique is demonstrated for fabricating an eight-channel 10-μm-spacing microarray MQW structure, and the bandgap wavelength of each channel is successfully controlled by changing the SiO2 mask pattern over a range of 90 nm. The technique is also applied to the fabrication of densely arrayed, eight-wavelength, Fabry-Perot laser diodes. The laser section is only 70 pm wide and 400 μm long. Eight different lasing wavelengths (each over 80 nm), a uniform threshold current of less than 9 mA, and an output power of over 10 mW are obtained
Keywords :
epitaxial growth; etching; masks; micro-optics; optical fabrication; quantum well lasers; semiconductor growth; semiconductor laser arrays; waveguide lasers; 10 mW; 10 mum; 400 mum; 70 mum; 9 mA; Fabry-Perot laser diodes; MASE technique; SiO2 mask pattern; bandgap energy control; densely arrayed MQW waveguides; densely arrayed eight-wavelength semiconductor lasers fabrication; epitaxial growth technique; extremely small integrated photonic devices; laser section; lasing wavelengths; microarray selective epitaxy; output power; semiconductor etching; uniform threshold current; Epitaxial growth; Etching; Fabry-Perot; Optical arrays; Optical device fabrication; Photonic band gap; Quantum well devices; Semiconductor laser arrays; Semiconductor waveguides; Waveguide lasers;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/2944.788401
Filename :
788401
Link To Document :
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