DocumentCode
929414
Title
An Analytical Solution of the Lateral Current Spreading and Diffusion Problem in Narrow Oxide Stripe (GaAl)As/GaAs DH Lasers
Author
Lengyel, G. ; Meissner, Paul L. ; Zschauer, K.-H.
Volume
30
Issue
4
fYear
1982
Firstpage
464
Lastpage
471
Abstract
An exact solution is presented to the problem of lateral current spreading in the resistive layer of oxide stripe geometry DH lasers. The two-dimensional Laplace equation was solved by conformal mapping using the Schwarz-Christoffel transformation. The diffusion equation containing nonlinear recombination terms was solved numerically. Computed examples demonstrate that the customary one-dimensioned treatment of the resistive layer or the assumption of constant current density under the stripe contact are not always justified, particularly for narrow stripe widths and low specific resistivities. This region of low values of the resistivity and stripe width, however, is of great practical interest in the design of oxide stripe lasers having high thermal stability and kink-free characteristics.
Keywords
Conductivity; Conformal mapping; Current density; DH-HEMTs; Gallium arsenide; Geometrical optics; Laplace equations; Laser stability; Nonlinear equations; Optical design;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.1982.1131088
Filename
1131088
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