A numerical method for symmetric cylindrical and spherical waveguide eigenvalue problems is presented using local discontinuous Galerkin (LDG) method based on polar coordinates. The method has the merit of having high accuracy without geometrical triangulation errors on the curved boundaries of the solution domain. As an illustration, the formulation of the LDG schemes in both cylindrical polar coordinates and spherical polar coordinates are derived and several numerical examples are presented. Numerical results reported demonstrate that the proposed LDG method can be used readily to solve waveguide eigenvalue problems accurately.Department of Electrical Engineerin
This paper presents a numerical investigation of rectangular 2D waveguide problems. Thereby, the res...
Localization and discreteness of the eigenmode spectra are examined for cylindrical dielectric waveg...
Finite differences, i.e., the direct discretization of the vector eigenmodes equation, can be a very...
The paper deals with a numerical solution of the problem of waveguide propagation of polarized light...
The discontinuous Galerkin (DG) method with different numerical fluxes is applied to the square wave...
The eigenmode propagation method is proposed to analyze the discontinuity problems in planar dielect...
A finite-difference technique to compute Eigenvalues and mode distribution of non standard waveguide...
A finite-difference technique to compute Eigenvalues and mode distribution of non standard waveguide...
Bibliography: p. 36.Contract AF33 (616)-6079, Project no. 9-(13-6278) Task 40572. Sponsored by Wrigh...
A new method for the computation of eigenmodes in Isotropic cylindrical loss-free dielectric wavegui...
Typescript (photocopy).The wave scattering due to discontinuities in a cylindrical structure with ax...
We describe here a Vector Finite Difference approach to the evaluation of waveguide eigenvalues and ...
We present a numerical approach to the simulation of dielectric waveguides that is free of spurious ...
[[abstract]]A numerical procedure using the finite-difference scheme and the shifted power method is...
International audienceWe propose a stable discontinuous Galerkin-type method (SDGM) for solving effi...
This paper presents a numerical investigation of rectangular 2D waveguide problems. Thereby, the res...
Localization and discreteness of the eigenmode spectra are examined for cylindrical dielectric waveg...
Finite differences, i.e., the direct discretization of the vector eigenmodes equation, can be a very...
The paper deals with a numerical solution of the problem of waveguide propagation of polarized light...
The discontinuous Galerkin (DG) method with different numerical fluxes is applied to the square wave...
The eigenmode propagation method is proposed to analyze the discontinuity problems in planar dielect...
A finite-difference technique to compute Eigenvalues and mode distribution of non standard waveguide...
A finite-difference technique to compute Eigenvalues and mode distribution of non standard waveguide...
Bibliography: p. 36.Contract AF33 (616)-6079, Project no. 9-(13-6278) Task 40572. Sponsored by Wrigh...
A new method for the computation of eigenmodes in Isotropic cylindrical loss-free dielectric wavegui...
Typescript (photocopy).The wave scattering due to discontinuities in a cylindrical structure with ax...
We describe here a Vector Finite Difference approach to the evaluation of waveguide eigenvalues and ...
We present a numerical approach to the simulation of dielectric waveguides that is free of spurious ...
[[abstract]]A numerical procedure using the finite-difference scheme and the shifted power method is...
International audienceWe propose a stable discontinuous Galerkin-type method (SDGM) for solving effi...
This paper presents a numerical investigation of rectangular 2D waveguide problems. Thereby, the res...
Localization and discreteness of the eigenmode spectra are examined for cylindrical dielectric waveg...
Finite differences, i.e., the direct discretization of the vector eigenmodes equation, can be a very...