DocumentCode :
753704
Title :
A joint finite-difference and FFT full vectorial beam propagation scheme
Author :
Kriezis, Em.E. ; Papagiannakis, A.G.
Author_Institution :
Dept. of Electr. & Comput. Eng., Aristotelian Univ. of Thessaloniki, Greece
Volume :
13
Issue :
4
fYear :
1995
fDate :
4/1/1995 12:00:00 AM
Firstpage :
692
Lastpage :
700
Abstract :
A full vectorial beam propagation scheme is developed and it is applied on 3-dimensional waveguide structures. The formulation is based on the coupled wave equations for the transverse electric field. Each propagation step is performed by utilizing both the FFT and a finite-difference implementation. Under this perspective the offered advantages of FFT and finite-differences are exploited within a single propagation step resulting in a joint propagation scheme. The scheme is applied on a step-index circular fiber where analytical solutions are readily available for cross-checking. Moreover, the dependence of the phase constant on the reference refractive index is discussed. The polarized modes and the effective mode indices are derived in the case of rib waveguides by performing propagation along imaginary distance. Further, the rib waveguide coupler is examined and the energy transfer is simulated
Keywords :
fast Fourier transforms; finite difference methods; optical couplers; optical fibre couplers; optical fibre theory; optical waveguide theory; refractive index; rib waveguides; vectors; 3-dimensional waveguide structures; coupled wave equations; cross-checking; effective mode indices; energy transfer; finite-difference implementation; full vectorial beam propagation scheme; imaginary distance; joint finite-difference FFT full vectorial beam propagation scheme; joint propagation scheme; phase constant; polarized modes; propagation step; reference refractive index; rib waveguide coupler; rib waveguides; single propagation step; step-index circular fiber; transverse electric field; Electromagnetic waveguides; Finite difference methods; Optical fiber couplers; Optical fiber polarization; Optical propagation; Optical refraction; Optical variables control; Optical waveguides; Partial differential equations; Refractive index;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.372483
Filename :
372483
Link To Document :
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