DocumentCode
828991
Title
Towards the optimization of dielectric branching waveguides: the effect of longitudinal variations in the branching angle
Author
Frenette, N.J.P. ; Cartledge, J.C.
Author_Institution
Dept. of Electr. Eng., Queen´´s Univ., Kingston, Ont., Canada
Volume
24
Issue
12
fYear
1988
Firstpage
2491
Lastpage
2499
Abstract
Mathematical models that describe mode propagation in planar Y-branch waveguides indicate there is a region in the branch where mode conversion occurs, provided asymmetry exists in the waveguide geometry or refractive index profile. Since the mode conversion is influenced by the degree of asymmetry and by the branching angle, the Y-branch can be designed to act as a power divider or as a mode splitter. The problem of identifying constant width Y-branch structures where longitudinal variations in the branching angle are introduced to optimize the power division or mode-splitting properties of a branching waveguide is considered. This constrained optimization is performed using forward dynamic programming and a compatible method of mode propagation analysis, the step approximation technique. The propagation characteristics of the optimized waveguide structure are compared to those of conventional constant-slope waveguides.<>
Keywords
optical waveguide theory; Y-branch; branching angle; constant width Y-branch structures; dielectric branching waveguides; forward dynamic programming; longitudinal variations; mathematical models; mode conversion; mode propagation; mode splitter; mode-splitting properties; optimized waveguide structure; planar Y-branch waveguides; power divider; power division; refractive index profile; step approximation technique; waveguide geometry; Dielectrics; Dynamic programming; Geometry; Optical propagation; Optical waveguides; Planar waveguides; Power dividers; Refractive index; Waveguide theory; Waveguide transitions;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/3.14380
Filename
14380
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