DocumentCode :
1229057
Title :
The spatially averaged electric field in the near field and far field of a circular aperture
Author :
Daly, Charles J. ; Nuteson, Todd W. ; Rao, Navalgund A H K
Author_Institution :
Boeing, Chantilly, VA, USA
Volume :
51
Issue :
4
fYear :
2003
fDate :
4/1/2003 12:00:00 AM
Firstpage :
700
Lastpage :
711
Abstract :
This paper presents a theoretical and numerical investigation of the spatially averaged electric field in the beam of a circular aperture. The investigation leads to closed-form analytical expressions, based on scalar diffraction theory, which describe the spatially averaged electric field in the Fresnel region of a circular aperture excited by a spatially uniform, harmonic plane wave. The expressions ultimately permit rapid, practical, and efficient prediction of certain routine electromagnetic measurements. Because the expressions are valid in the Fresnel region, they are also valid in the near field, the far field, and the Fraunhofer region of a circular aperture. In fact, it is shown that the closed-form expressions contain, as special cases, classic on-axis and far-field results associated with a circular aperture. The analytical expressions are based on a generalization of Fresnel diffraction originally developed by Lommel in the late 1800s. Hence, a thorough review of the literature on the Lommel diffraction formulation is presented. Finally, it is shown that results obtained from the closed-form expressions compare quite favorably to results obtained from the exact solution computed via the dyadic Green´s function approach.
Keywords :
Fraunhofer diffraction; Fresnel diffraction; Green´s function methods; antenna theory; aperture antennas; electromagnetic wave diffraction; Fraunhofer region; Fresnel region; Lommel diffraction formulation; aperture antennas; circular aperture; closed-form analytical expressions; dyadic Green´s function; electromagnetic measurements; far field; harmonic plane wave; near field; on-axis results; scalar diffraction theory; spatially averaged electric field; Antenna measurements; Apertures; Closed-form solution; Density measurement; Electromagnetic diffraction; Electromagnetic measurements; Electromagnetic radiation; Optical diffraction; Power measurement; Space technology;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2003.811072
Filename :
1208528
Link To Document :
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