DocumentCode :
898802
Title :
Magnetic-Type Dyadic Green´s Functions for a Corrugated Rectangular Metaguide Based on Asymptotic Boundary Conditions
Author :
Eshrah, Islam A. ; Kishk, Ahmed A.
Author_Institution :
Cairo Univ., Giza
Volume :
55
Issue :
6
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
1124
Lastpage :
1131
Abstract :
The Green´s functions for the magnetic scalar and electric vector potentials are derived for a rectangular waveguide with dielectric-filled corrugations supporting left-hand, as well as right-hand propagation. The derivation of the Green´s functions for this pair of auxiliary potentials is more involved than their electric-type counterparts. An investigation of the divergence of the electric vector potential is performed with emphasis on the waveguide transverse electric modes. As a result of the divergenceless nature of the vector potential for these modes, the scalar potential is shown to vanish within the corrugations, and the rest of the derivation proceeds by employing the spectral representation then transforming back to the spatial domain. The derived expressions are verified by considering some examples involving discontinuities that can be modeled by equivalent magnetic currents in view of the equivalence principle. Comparison with full-wave simulation commercial packages validates the current theory.
Keywords :
Green´s function methods; dielectric-loaded waveguides; metamaterials; rectangular waveguides; asymptotic boundary conditions; corrugated rectangular metaguide; dielectric-filled corrugations; electric vector potentials; equivalence principle; magnetic currents; magnetic scalar potentials; magnetic-type dyadic Green´s functions; rectangular waveguide; right-hand propagation; waveguide transverse electric modes; Boundary conditions; Dielectrics; Electric potential; Fourier transforms; Green´s function methods; Magnetic analysis; Packaging; Periodic structures; Rectangular waveguides; Scattering; Auxiliary potentials; Green´s function; corrugated waveguide; metamaterial transmission line;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2007.897669
Filename :
4231330
Link To Document :
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