DocumentCode
1193330
Title
40-gb/s EA modulators with wide temperature operation and negative chirp
Author
Billia, Luca ; Zhu, Jintian ; Ranganath, Tirumala ; Bour, David P. ; Corzine, Scott W. ; Höfler, Gloria E.
Author_Institution
Turin Technol. Center, Italy
Volume
17
Issue
1
fYear
2005
Firstpage
49
Lastpage
51
Abstract
Broad bandwidth external modulators are widely used in optical fiber networks to avoid the chirp associated with the direct modulation of laser diode sources. For transmission application beyond 10 Gb/s, electroabsorption modulators (EAMs) offer many advantages such as low drive voltage, low chirp characteristics, small size, and added functionality through integration with a distributed feedback laser. In this letter, we present static and dynamic characterization of an EAM demonstrating the possibility to have with the same device uncooled operation at 40 Gb/s and negative chirp at low negative bias. These features are attractive for cost reduction in short link applications and for long-haul transmission. All the measurements are performed at 40 Gb/s from room temperature up to 60°C demonstrating a negative chirp behavior for the stand-alone modulator over the entire temperature range.
Keywords
chirp modulation; electro-optical modulation; electroabsorption; optical fibre networks; semiconductor devices; semiconductor quantum wells; 20 to 60 degC; 40 Gbit/s; broad bandwidth external modulators; distributed feedback laser; dynamic characterization; electroabsorption modulators; long-haul transmission; low chirp characteristics; low drive voltage; low negative bias; multiple quantum wells; negative chirp; optical fiber networks; room temperature; semiconductor devices; short link applications; static characterization; uncooled operation; wide temperature operation; Bandwidth; Chirp modulation; Diode lasers; Distributed feedback devices; Drives; Fiber lasers; Laser feedback; Low voltage; Optical fiber networks; Temperature distribution; Chirp modulation; electroabsorption; measurement; wide temperature operation;
fLanguage
English
Journal_Title
Photonics Technology Letters, IEEE
Publisher
ieee
ISSN
1041-1135
Type
jour
DOI
10.1109/LPT.2004.837921
Filename
1372579
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