DocumentCode
940850
Title
Integral Formulation for Analysis of Integrated Dielectric Waveguides
Author
Bagby, Jonathan S. ; Nyquist, Dennis P. ; Drachman, Byron C.
Volume
33
Issue
10
fYear
1985
fDate
10/1/1985 12:00:00 AM
Firstpage
906
Lastpage
915
Abstract
A polarization integral equation is advanced for use in the conceptual and numerical analysis of a broad class of integrated dielectric waveguiding systems. The equation is applied to axially uniform waveguides, in which case the axial integral becomes convolutional in nature, prompting a Fourier transform on that variable. Inversion of the transformed guiding region field, aided by complex analysis, allows identification of two components of that field the surface-wave modes and the radiation field. These are found in terms of the sources exciting the system, leading to a new formulation for the excitation of such waveguides. Analysis of the behavior of the kernel of the transformed integral equation in the complex plane leads to a general criterion for surface-wave leakage from the guiding region. Numerical results for the propagation characteristics of step- and the graded-index rectangular strip and rib waveguides are obtained from the integral equation by application of the method of moments and by a quasi-closed-form solution technique. These results are compared to those of other formulations. Further application of the integral equation is discussed, and several promising areas for further study are identified.
Keywords
Boundary conditions; Dielectrics; Fourier transforms; Integral equations; Kernel; Numerical analysis; Polarization; Rectangular waveguides; Shape; Strips;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.1985.1133149
Filename
1133149
Link To Document