DocumentCode
1420468
Title
Microwave-optoelectronic modelling approaches for semiconductor lasers
Author
Sum, K.C. ; Gomes, N.J.
Author_Institution
Electron. Eng. Lab., Kent Univ., Canterbury, UK
Volume
145
Issue
3
fYear
1998
fDate
6/1/1998 12:00:00 AM
Firstpage
141
Lastpage
146
Abstract
A study into semiconductor-laser modelling approaches for the microwave/ millimetre-wave frequency regime is presented. Two approaches have been investigated in detail. An integrated-equivalent-circuit model covers both parasitic and intrinsic components of the laser has been implemented in a microwave-circuit simulator. The potential of this modelling approach has been demonstrated by simulating complete optical transmitters (including external circuits). Secondly, a combined model which includes part of the equivalent-circuit model and a numerical time-domain model based on coupled-wave theory has been developed. This combined model permits the modelling of both electrical and optical characteristics for more complex laser structures and it has been employed in applications such as circuit design for chirp and intensity-fluctuation suppression with multielectrode distributed-feedback (DFB) lasers and an investigation into distributed microwave effects on the short pulses generated from a single-electrode DFB laser under gain-switched conditions
Keywords
chirp modulation; coupled mode analysis; distributed feedback lasers; electro-optical modulation; equivalent circuits; fluctuations; integrated circuit modelling; laser theory; optical transmitters; semiconductor device models; semiconductor lasers; circuit design; complete optical transmitters; complex laser structures; coupled-wave theory; equivalent-circuit model; external circuits; integrated-equivalent-circuit model; intensity-fluctuation suppression; intrinsic components; microwave-optoelectronic modelling approaches; millimetre-wave frequency regime; multielectrode DFB lasers; numerical time-domain model; optical characteristics; parasitic components; semiconductor lasers; semiconductor-laser modelling approaches;
fLanguage
English
Journal_Title
Optoelectronics, IEE Proceedings -
Publisher
iet
ISSN
1350-2433
Type
jour
DOI
10.1049/ip-opt:19981961
Filename
710076
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