Title :
Computation of electromagnetic fields guided by a cylindrical inhomogeneity in a homogeneous medium of infinite extent
Author :
Mur, G. ; Fondse, P.J.
Author_Institution :
Delft University of Technology, Department of Electrical Engineering, Laboratory of Electromagenetic Research, Delft, Netherlands
fDate :
11/1/1979 12:00:00 AM
Abstract :
A rigorous numerical method is presented for computing time-harmonic electromagnetic fields that are guided by a transparent, lossless inhomogeneity in a homogeneous medium of infinite extent. Geometrically, the inhomogeneity is a cylinder of arbitrary cross-section. The structure is typical for a uniform open waveguide. On using the wave functions of the circular cylinder outside a cylinder that surrounds the inhomogeneity, and on transforming the electromagnetic-field equations inside this cylinder into a system of first-order ordinary differential equations, a two-point differential eigenproblem is obtained that is solved using standard techniques. Results are presented for waveguides with an equilaterally triangular and a rectangular cross-section, respectively. The latter is studied in detail.
Keywords :
dielectric waveguides; differential equations; guided electromagnetic wave propagation; numerical methods; optical waveguide theory; waveguide theory; EM fields computation; cylindrical inhomogeneity; cylindrical waveguides; dielectric waveguides; differential eigenproblem; differential equations; equilateral triangle waveguides; homogeneous medium; rectangular waveguides; rigorous numerical method; uniform open waveguide; wave functions; waveguide theory;
Journal_Title :
Microwaves, Optics and Acoustics, IEE Journal on
DOI :
10.1049/ij-moa.1979.0048