DocumentCode :
783910
Title :
Three-dimensional coupled mode method for simulation of coupler and filter structures
Author :
Weinert, Carl Michael
Author_Institution :
Heinrich-Hertz-Inst. fuer Nachrichtentech. Berlin GmbH, Germany
Volume :
10
Issue :
9
fYear :
1992
fDate :
9/1/1992 12:00:00 AM
Firstpage :
1218
Lastpage :
1225
Abstract :
A method based on coupled mode theory for numerical simulation of three-dimensional structures is presented. It can be applied to all coupling structures for which the interaction with radiation modes is unimportant and distortions of the fields due to waveguide curvature are small. It treats the device cross section by a two-dimensional finite-difference algorithm, thus avoiding the limitations and errors made by the effective index approximation. The coupled mode equations are solved. including the cross power terms, which are important for designing couplers and filters. The method permits the design of couplers with arbitrary 2-D cross sections, including the feeding branches. Examples for calculations of planar rib waveguide couplers and buried vertical couplers are given, together with design rules for couplers as arbitrary power dividers. A wavelength filter structured as a meander coupler was simulated, and good agreement with the experimental data was achieved. In spite of the two-dimensional cross-section treatment, the method is in most cases even faster than the standard beam propagation method with a one-dimensional effective index profile
Keywords :
finite difference methods; integrated optics; optical couplers; optical design techniques; optical filters; buried vertical couplers; coupled mode method; coupler; coupling structures; cross power terms; design rules; device cross section; feeding branches; filter structures; meander coupler; numerical simulation; planar rib waveguide couplers; power dividers; three-dimensional structures; two-dimensional finite-difference algorithm; Equations; Filters; Geometry; Indium phosphide; Mach-Zehnder interferometers; Optical coupling; Slabs; Solid modeling; Testing; Waveguide theory;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.156871
Filename :
156871
Link To Document :
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