An efficient scheme based on the bi-Lanczos algorithm has been developed for analysis of the dielectric-waveguide problem. A two-dimensional finite-difference scheme in the frequency domain is used to discretize the waveguide cross section. The resulting sparse eigenvalue problem is solved efficiently using the bi-Lanczos algorithm. Apart from solving the modes of the dielectric waveguide, a scheme to solve for the fields in the presence of a localized source is also described. Numerical results are also included to confirm the validity of the method.link_to_subscribed_fulltex
We present a $G_0W_0$ implementation that assesses the two major bottlenecks of traditional plane-wa...
The finite difference in the frequency domain (FD-FD) method is used here to analyze the propagation...
Localization and discreteness of the eigenmode spectra are examined for cylindrical dielectric waveg...
Two Krylov subspace-based methods are used to solve the sparse matrix generated by the finite differ...
132 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.In this thesis, we have devel...
We present a numerical approach to the simulation of dielectric waveguides that is free of spurious ...
We introduce a novel variant of the Lanczos method for computing a few eigenvalues of sparse and/or ...
Two stage process was used to solve the eigenvalue problems posed by dielectric waveguide formulatio...
AbstractApplication of finite-difference (FDM) and finite-element (FEM) methods for the analysis of ...
[[abstract]]A numerical procedure using the finite-difference scheme and the shifted power method is...
In this dissertation, efficient algorithms for the study of waveguiding and scattering from dielectr...
For weakly guiding dielectric waveguides, the eigenmode field distributions are calculated numerical...
The fields scattered by dielectric objects placed inside parallel-plate waveguides and periodic stru...
A method for computing the modes of dielectric guiding structures based on finite differences is des...
A new method for the computation of eigenmodes in Isotropic cylindrical loss-free dielectric wavegui...
We present a $G_0W_0$ implementation that assesses the two major bottlenecks of traditional plane-wa...
The finite difference in the frequency domain (FD-FD) method is used here to analyze the propagation...
Localization and discreteness of the eigenmode spectra are examined for cylindrical dielectric waveg...
Two Krylov subspace-based methods are used to solve the sparse matrix generated by the finite differ...
132 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.In this thesis, we have devel...
We present a numerical approach to the simulation of dielectric waveguides that is free of spurious ...
We introduce a novel variant of the Lanczos method for computing a few eigenvalues of sparse and/or ...
Two stage process was used to solve the eigenvalue problems posed by dielectric waveguide formulatio...
AbstractApplication of finite-difference (FDM) and finite-element (FEM) methods for the analysis of ...
[[abstract]]A numerical procedure using the finite-difference scheme and the shifted power method is...
In this dissertation, efficient algorithms for the study of waveguiding and scattering from dielectr...
For weakly guiding dielectric waveguides, the eigenmode field distributions are calculated numerical...
The fields scattered by dielectric objects placed inside parallel-plate waveguides and periodic stru...
A method for computing the modes of dielectric guiding structures based on finite differences is des...
A new method for the computation of eigenmodes in Isotropic cylindrical loss-free dielectric wavegui...
We present a $G_0W_0$ implementation that assesses the two major bottlenecks of traditional plane-wa...
The finite difference in the frequency domain (FD-FD) method is used here to analyze the propagation...
Localization and discreteness of the eigenmode spectra are examined for cylindrical dielectric waveg...