DocumentCode
1196051
Title
Exact Closed-Form Expression of a Sommerfeld Integral for the Impedance Plane Problem
Author
Koh, Il-Suek ; Yook, Jong-Gwan
Author_Institution
Graduate Sch. of Inf. Technol. & Telecommun., Inha Univ., Incheon
Volume
54
Issue
9
fYear
2006
Firstpage
2568
Lastpage
2576
Abstract
A Sommerfeld integral for an impedance half-plane is one of the classical problems in electromagnetic theory. In this paper, the integral is evaluated into two series representations, which are expressed in terms of the exponential integral and the Lommel function, respectively. It is shown that the series expansions absolutely converge for any parameters, such as distance or surface impedance. Then based on the Lommel function expansion, an exact closed-form expression of the integral is formulated. This expression is written in terms of incomplete Weber integrals, which are directly related to incomplete cylindrical functions such as incomplete Lipschitz-Hankel integrals. Additionally, a complete asymptotic series of the integral is obtained based on the exponential integral expansion. With conventional methods such as steepest descent method, it is cumbersome to derive the divergent series. The validity of all the formulations derived in this paper is demonstrated through a comparison with a numerical integration of the integral for various situations
Keywords
circular waveguides; electromagnetic waves; Lommel function expansion; Sommerfeld integral; asymptotic series; closed-form expression; electromagnetic theory; exponential integral expansion; impedance plane problem; Circuits; Closed-form solution; Dielectrics; Electromagnetic fields; Electromagnetic propagation; Electromagnetic radiation; Geometrical optics; Helium; Radio frequency; Surface impedance; Dyadic Green´s function; Lipschitz-Hankel integral; Sommerfeld integral; impedance half plane;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2006.880747
Filename
1688045
Link To Document