DocumentCode :
1540395
Title :
Analysis of dielectric waveguides by a modified Fourier decomposition method with adaptive mapping parameters
Author :
Wangüemert-Pérez, J.G. ; Molina-Fernández, I.
Author_Institution :
Dept. de Ingenieria de Comunicaciones, Malaga Univ., Spain
Volume :
19
Issue :
10
fYear :
2001
fDate :
10/1/2001 12:00:00 AM
Firstpage :
1614
Lastpage :
1627
Abstract :
The adaptive modified Fourier decomposition method (A-MFDM), a recently proposed technique to perform the modal analysis of linear and nonlinear two-dimensional dielectric waveguides, is now extended to three-dimensional scalar structures for the first time. The method includes a strategy to automatically find quasioptimum numerical parameters of the technique, which, on the one hand, improves the accuracy in relation to the known Fourier decomposition method (FDM) and, on the other, makes the method self-adaptive. To validate the performance of the method, two linear dielectric waveguides with exact solutions have been defined and analyzed. Finally, the modal analysis of an asymmetrical rib waveguide directional coupler is carried out and the obtained results confirm the clear superiority of the A-MFDM in realistic situations
Keywords :
modal analysis; optical directional couplers; optical waveguide theory; optical waveguides; rib waveguides; 3D scalar structures; Fourier decomposition method; adaptive mapping parameters; asymmetrical rib waveguide directional coupler; dielectric waveguides; exact solutions; linear dielectric waveguides; linear two-dimensional dielectric waveguides; modal analysis; modified Fourier decomposition method; nonlinear two-dimensional dielectric waveguides; quasioptimum numerical parameters; self-adaptive; Dielectric devices; Directional couplers; Fourier series; Modal analysis; Optical design; Optical devices; Optical waveguides; Optimization methods; Performance analysis; Telecommunications;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.956149
Filename :
956149
Link To Document :
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