DocumentCode :
843879
Title :
Eight-channel wavelength multiplexing with 200-GHz spacing using uncooled coaxial fiber Bragg grating external-cavity semiconductor laser module
Author :
Hashimoto, Jun-ichi ; Kato, Takashi ; Nakanishi, Hiromi ; Yoshida, Kazunori ; Sasaki, Goro ; Yamaguchi, Akira ; Katsuyama, Tsukuru ; Yamabayashi, Naoyuki
Author_Institution :
Optoelectron. R&D Labs., Sumitomo Electr. Ind. Ltd., Yokohama, Japan
Volume :
14
Issue :
11
fYear :
2002
Firstpage :
1617
Lastpage :
1619
Abstract :
As a low-cost light source for wavelength-division-multiplexing networks, the authors develop an uncooled coaxial fiber Bragg grating external-cavity semiconductor laser (FGL). To realize high-wavelength stability, an FGL structure is adopted, and to reduce the cost of light source itself, a coaxial pigtail module structure is selected. High-wavelength stabilities of 2 pm/mA and 12 pm/K against current and ambient temperature variation are realized. Using the FGLs, successive eight-channel wavelength multiplexing with 200-GHz spacing and with almost the same peak power is realized between -30/spl deg/C to 70/spl deg/C. For each channel, the wavelength difference from the corresponding ITU grid is only within /spl plusmn/0.1 nm at 25/spl deg/C.
Keywords :
Bragg gratings; laser cavity resonators; modules; optical communication equipment; semiconductor lasers; stability; telecommunication channels; wavelength division multiplexing; -30 to 70 degC; 25 degC; GHz spacing; ambient temperature variation; channel; coaxial pigtail module structure; eight-channel wavelength multiplexing; high-wavelength stabilities; high-wavelength stability; light source; low-cost light source; peak power; uncooled coaxial fiber Bragg grating external-cavity semiconductor laser; uncooled coaxial fiber Bragg grating external-cavity semiconductor laser module; wavelength difference; wavelength-division-multiplexing networks; Coaxial components; Costs; Fiber gratings; Fiber lasers; Light sources; Semiconductor lasers; Semiconductor optical amplifiers; Temperature; WDM networks; Wavelength division multiplexing;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2002.803874
Filename :
1042023
Link To Document :
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