DocumentCode :
275790
Title :
A new finite element scheme for optical temporal soliton analysis
Author :
Hernandez-Figueroa, Hugo E.
Author_Institution :
Imperial Coll., London
fYear :
1991
fDate :
25-27 Nov 1991
Firstpage :
167
Lastpage :
170
Abstract :
In order to get insights for more complex nonlinear scalar or vectorial simulations, which could include simultaneous spatial and temporal soliton analysis, a comparison among the most common two step-by-step finite element method (SbS/FEM) algorithms, the FE scheme and the well known split step/Fourier method (SS/FM), has been performed. To reach this goal, as a model, the dimensionless nonlinear Schrodinger equation, associated to the Kerr nonlinearity type, has been adopted. This equation describes optical temporal solitons propagating through a nonlinear monomode optical fibre (NMOF). From a numerical point of view this example constitutes a very good test provided that the collision can create numerical instabilities due to the complex shape adopted by the pulses during the colliding interaction
Keywords :
Schrodinger equation; finite element analysis; optical waveguide theory; solitons; Kerr nonlinearity; colliding interaction; finite element method; nonlinear Schrodinger equation; nonlinear monomode optical fibre; numerical instabilities; optical temporal soliton; pulses; split step Fourier method; vectorial simulations;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Computation in Electromagnetics, 1991., International Conference on
Conference_Location :
London
Print_ISBN :
0-85296-529-X
Type :
conf
Filename :
140143
Link To Document :
بازگشت