DocumentCode
783978
Title
The effect of stitching errors on the spectral characteristics of DFB lasers fabricated using electron beam lithography
Author
Kjellberg, Torgil ; Schatz, Richard
Author_Institution
Dept. of Optoelectron. & Electr. Meas., Chalmers Univ. of Technol., Goteborg, Sweden
Volume
10
Issue
9
fYear
1992
fDate
9/1/1992 12:00:00 AM
Firstpage
1256
Lastpage
1266
Abstract
Field stitching errors and their effect on the single-mode characteristics of distributed feedback (DFB) lasers fabricated using electron beam lithography were investigated. The stitching errors are associated with small-area, high-resolution electron beam exposure, which has the potential advantage of high-speed writing of laser gratings. Measurements show that the errors are composed of a systematic and a stochastic part. Their effect on the gain margin was simulated both for λ/4 phase-shifted and optimized multiple-phase-shifted DFB lasers. Simulations show that the lasers are insensitive to the systematic part of the stitching errors if the number of errors is large enough. The stochastic part was found to give rise to a variation in gain margin of the DFB lasers. It is concluded that the field stitching accuracy in the high-resolution mode of a commercial system for electron beam lithography is sufficient to provide a high yield of single-mode lasers. However, it is essential that certain precautions be taken considering exposure conditions and that a fault tolerant laser design be used
Keywords
III-V semiconductors; diffraction gratings; distributed feedback lasers; electron beam lithography; errors; gallium arsenide; gallium compounds; indium compounds; optical workshop techniques; semiconductor lasers; Bragg grating; DFB lasers; InP-InGaAsP laser; electron beam lithography; fault tolerant laser design; gain margin; high-resolution electron beam exposure; high-speed writing; laser gratings; phase shifted lasers; simulation; single-mode characteristics; spectral characteristics; stitching errors; stochastic errors; systematic errors; Distributed feedback devices; Electron beams; Fault tolerance; Gratings; Laser feedback; Laser modes; Lithography; Stochastic processes; Stochastic systems; Writing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.156877
Filename
156877
Link To Document