DocumentCode :
989199
Title :
Simulation Analysis of Higher Order Laterally-Coupled Distributed Feedback Lasers
Author :
Millett, Ronald R. ; Hinzer, Karin ; Hall, Trevor J. ; Schriemer, Henry
Author_Institution :
Centre for Res. in Photonics, Ottawa Univ., Ottawa, ON
Volume :
44
Issue :
12
fYear :
2008
Firstpage :
1145
Lastpage :
1151
Abstract :
Laterally-coupled distributed feedback (LC-DFB) lasers use a lithographic fabrication step to define the distributed feedback grating, avoiding subsequent regrowth. Using higher order gratings can enhance the lithographic tolerance for lower resolution patterning, yielding lasers more amenable to fabrication. We show that LC-DFB lasers with higher order gratings, although requiring a higher threshold gain than those of first-order, provide a degree of longitudinal mode discrimination. Incorporating radiating partial waves, we have calculated modified coupled-mode coefficients for various duty cycles, grating orders, and grating geometries using a two-dimensional finite-element method. The modified coupled-mode equations were solved with and without a lambda/4 phase shift. The phase shift, while beneficial for first-order gratings, was found to generally diminish laser performance for lasers with higher order gratings.
Keywords :
coupled mode analysis; diffraction gratings; distributed feedback lasers; finite element analysis; laser modes; semiconductor lasers; coupled-mode coefficients; grating geometries; higher order gratings; laterally-coupled distributed feedback lasers; phase shift; semiconductor lasers; two-dimensional finite-element method; Analytical models; Distributed feedback devices; Gratings; Laser feedback; Laser modes; Laser theory; Optical coupling; Semiconductor lasers; Surface emitting lasers; Waveguide lasers; Distributed feedback lasers; coupled-mode theory; semiconductor lasers;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2008.2002089
Filename :
4674653
Link To Document :
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