DocumentCode
1181349
Title
Resonant-wavelength control and optical-confinement analysis for graded SCH VCSELs using a self-consistent effective-index method
Author
Ng, Wei-Choon ; Liu, Yang ; Hess, Karl
Author_Institution
Beckman Inst., Univ. of Illinois, Urbana, IL, USA
Volume
21
Issue
2
fYear
2003
Firstpage
555
Lastpage
560
Abstract
We report novel design considerations for graded separate confinement heterostructure (SCH) cavities of oxide-confined vertical-cavity surface-emitting lasers (VCSELs). Using a self-consistent effective-index method, we have analyzed ungraded, linearly and exponentially graded SCH cavities of an 850-nm VCSEL. An ungraded SCH gives the best optical-confinement factor, while linear and exponential gradings reduce the factor by 18% and 9%, respectively. Grading the SCH cavities of oxide-confined VCSELs leads to both a shift in the resonant wavelength as well as a decrease in the optical-confinement factor. The resonant-wavelength shifts in graded SCH cavities are attributed to two competing effects: the formation of an effective-index step that redefines the λ cavity, and larger optical-field leakage, which relaxes the confinement. We have also demonstrated that wavelength shifts can be easily compensated by optimized width extensions of the aperture layers which sandwich the graded SCH cavity, without further reducing the optical-confinement factor. Based on a revised understanding of the resonances for graded SCH cavities, we can therefore control the design of graded SCH VCSELs to obtain a desired resonant wavelength with great precision.
Keywords
gradient index optics; laser cavity resonators; optical variables control; quantum well lasers; surface emitting lasers; 850 nm; aperture layer optimized width extensions; design considerations; effective-index step; exponentially graded SCH cavities; graded SCH VCSELs; linearly graded SCH cavities; optical-confinement analysis; optical-confinement factor; optical-field leakage; oxide-confined vertical-cavity surface-emitting lasers; resonant wavelength shift; resonant-wavelength control; self-consistent effective-index method; ungraded SCH cavities; wavelength shift compensation; Apertures; Carrier confinement; Communication system control; Optical control; Optical resonators; Optical surface waves; Optical waveguides; Resonance; Surface emitting lasers; Vertical cavity surface emitting lasers;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2003.808758
Filename
1193843
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