DocumentCode :
1162364
Title :
Time-domain radiation from large two-dimensional apertures via narrow-waisted Gaussian beams
Author :
Galdi, Vincenzo ; Felsen, Leopold B. ; Castañon, David A.
Author_Institution :
Dept. of Electr. & Comput. Eng., Boston Univ., MA, USA
Volume :
51
Issue :
1
fYear :
2003
fDate :
1/1/2003 12:00:00 AM
Firstpage :
78
Lastpage :
88
Abstract :
This paper deals with the short-pulse radiation of three-dimensional (3-D) vector electromagnetic fields from arbitrarily polarized large two-dimensional (2-D) truncated aperture distributions, which are parameterized in terms of narrow-waisted ray-like pulsed Gaussian basis beams centered on a discretized Gabor lattice in a four-dimensional (4-D) configuration-spectrum phase space. The study extends our previous Gabor-based investigation of time-domain (TD) short-pulse radiation of 2-D fields from 1-D large truncated apertures with nonphased, linearly phased (delayed) and nonlinearly phased focusing aperture field profiles . We begin with, and summarize, a Gabor-based frequency domain (FD) formulation of the 2-D aperture problem which has been presented and tested elsewhere, but we include additional numerical examples for validation and quality assessment. As done by Galdi, Felsen and Castanon (see ibid., vol 49, p. 1322-32, Sept. 2001) we access the time domain by Fourier inversion from the FD, starting from the initial 3-D space-time Kirchhoff formulation (whose numerical integration furnishes reference solutions), and then passing on to Gabor-parameterized field representations in terms of pulsed beam (PB) wavepackets which are launched by linearly and nonlinearly phase-delayed focusing aperture distributions. Example calculations and comparisons with numerically generated reference data serve to calibrate the Gabor-PB algorithms and assess their domains of validity.
Keywords :
Fourier transforms; Gaussian processes; delays; electromagnetic fields; electromagnetic wave propagation; integration; inverse problems; time-domain analysis; 1D large truncated apertures; 2D fields; 2D truncated aperture distributions; 3D space-time Kirchhoff formulation; 3D vector EM fields; 3D vector electromagnetic fields; 4D configuration-spectrum phase space; EM wave propagation; Fourier inversion; Gabor-PB algorithms; Gabor-based frequency domain formulation; Gabor-parameterized field representations; delayed aperture field; discretized Gabor lattice; large 2D apertures; large two-dimensional apertures; linearly phased focusing aperture field; narrow-waisted Gaussian beams; nonlinearly phased focusing aperture field; nonphased focusing aperture field profile; numerical integration; pulsed beam wavepackets; ray-like pulsed Gaussian basis beams; short-pulse radiation; time-domain radiation; time-domain short-pulse radiation; two-dimensional truncated aperture distributions; Apertures; Beams; Delay lines; EMP radiation effects; Electromagnetic fields; Electromagnetic radiation; Electromagnetic wave polarization; Lattices; Time domain analysis; Two dimensional displays;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2003.808520
Filename :
1187419
Link To Document :
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