DocumentCode
3802737
Title
Improved Bidirectional-Mode Expansion Propagation Algorithm Based on Fourier Series
Author
Jiri Ctyroky
Author_Institution
Institute of Photonics and Electronics AS CR, v.v.i., Chaberska 57, 182 51 Prague 8, Czech Republic
Volume
25
Issue
9
fYear
2007
Firstpage
2321
Lastpage
2330
Abstract
In this paper, an improved version of a 2-D bidirectional eigenmode expansion propagation algorithm based on Fourier series expansion for modeling optical field distribution in waveguide devices is presented. The algorithm is very simple, numerically robust, and inherently reciprocal. It does not require root searching in the complex plane. Proper truncation rules are used to ensure good convergence properties for TM-polarized waves. Perfectly matched layers as absorbing boundary conditions can be implemented in a very simple way using complex coordinate stretching. The approach represents a transition between purely modal and Fourier expansion methods for modeling guided-wave photonic structures.
Keywords
"Fourier series","Optical waveguides","Optical propagation","Boundary conditions","Periodic structures","Transmission line matrix methods","Convergence","Perfectly matched layers","Microwave propagation","Nonlinear optics"
Journal_Title
Journal of Lightwave Technology
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2007.901449
Filename
4298961
Link To Document