DocumentCode
1027895
Title
On the eigenfunction expansion of electromagnetic dyadic Green´s functions
Author
Pathak, Prabhakar H.
Author_Institution
Ohio State Univ., Columbus, OH, USA
Volume
31
Issue
6
fYear
1983
fDate
11/1/1983 12:00:00 AM
Firstpage
837
Lastpage
846
Abstract
A relatively simple approach is described for developing the complete eigenfunction expansion of time-harmonic electric (
) and magnetic (
) fields within exterior or interior regions containing an arbitrarily oriented electric current point source. In particular, these results yield directly the complete eigenfunction expansion of the electric and magnetic dyadic Green\´s functions
and
that are associated with
and
, respectively. This expansion of
and
contains only the solenoidal type eigenfunctions. In addition, the expansion of
also contains an explicit dyadic delta function term which is required for making that expansion complete at the source point. The explicit dyadic delta function term in
is found readily from a simple condition governing the behavior of the eigenfunction expansion at the source point, provided one views that condition in the light of distribution theory. These general expressions for the eigenfunction expansion of
and
reduce properly to those obtained previously for special geometries by Tai.
) and magnetic (
) fields within exterior or interior regions containing an arbitrarily oriented electric current point source. In particular, these results yield directly the complete eigenfunction expansion of the electric and magnetic dyadic Green\´s functions
and
that are associated with
and
, respectively. This expansion of
and
contains only the solenoidal type eigenfunctions. In addition, the expansion of
also contains an explicit dyadic delta function term which is required for making that expansion complete at the source point. The explicit dyadic delta function term in
is found readily from a simple condition governing the behavior of the eigenfunction expansion at the source point, provided one views that condition in the light of distribution theory. These general expressions for the eigenfunction expansion of
and
reduce properly to those obtained previously for special geometries by Tai.Keywords
Eigenvalues/eigenvectors; Green´s functions; Current; Eigenvalues and eigenfunctions; Engine cylinders; Genetic expression; Geometry; Green´s function methods; Polarization; Rectangular waveguides; Surface waves;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.1983.1143151
Filename
1143151
Link To Document