DocumentCode :
1134850
Title :
Wide Temperature Range Operation of a 1.55- \\mu m 40-Gb/s Electroabsorption Modulator Integrated DFB Laser for Very Short-Reach Applications
Author :
Kobayashi, Wataru ; Yamanaka, Takayuki ; Arai, Masakazu ; Fujiwara, Naoki ; Fujisawa, Takeshi ; Tsuzuki, Ken ; Ito, Toshio ; Tadokoro, Takashi ; Kano, Fumiyoshi
Author_Institution :
Photonics Labs., NTT Corp., Atsugi, Japan
Volume :
21
Issue :
18
fYear :
2009
Firstpage :
1317
Lastpage :
1319
Abstract :
We present the uncooled operation of a 1.55- mum 40-Gb/s InGaAlAs electroabsorption modulator (EAM) integrated distributed-feedback (DFB) laser within a temperature range of 95degC (-15degC to 80degC ). To the best of our knowledge, this is the largest temperature range reported so far for such a 40-Gb/s EAM integrated DFB laser. We designed the EAM to operate at high speed by reducing the electrical parasitics, and we achieved a 3-dB frequency bandwidth of over 39 GHz for an EAM length of less than 150 mum. We demonstrated a 2-km single-mode fiber (SMF) transmission at 40-Gb/s over a wide temperature range of -15degC to 80degC by adjusting only the bias voltage to the EAM while keeping the modulation voltage swing constant at 2.0 V when the temperature changed. We achieved a dynamic extinction ratio of over 8.2 dB and a 2-km SMF transmission with a power penalty of less than 2 dB over a wide temperature range.
Keywords :
III-V semiconductors; acoustoelectric devices; aluminium compounds; distributed feedback lasers; gallium compounds; indium compounds; modulators; semiconductor lasers; DFB laser; InGaAlAs; bit rate 40 Gbit/s; distributed feedback laser; dynamic extinction ratio; electroabsorption modulator; single-mode fiber transmission; temperature -15 degC to 80 degC; 40 Gb/s; Distributed-feedback (DFB) laser; InGaAlAs; electroabsorption modulator (EAM); uncooled operation;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2009.2026485
Filename :
5165038
Link To Document :
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