Diffraction of a Transverse Electric (TE) X-Wave by Conducting Objects

A study of the diffraction and scattering of a transverse electric X-wave by conducting bodies is presented based on the timedomain, uniform theory of diffraction method and the pulsed plane wave representation of an X-wave. The latter allows the calculation of the diffraction and scattering of each...

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Veröffentlicht in:Electromagnetic waves (Cambridge, Mass.) Mass.), 2002-01, Vol.38, p.167-198
Hauptverfasser: Attiya, A. M., El-Diwany, E., Shaarawi, A. M., Besieris, I. M.
Format: Artikel
Sprache:eng
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Zusammenfassung:A study of the diffraction and scattering of a transverse electric X-wave by conducting bodies is presented based on the timedomain, uniform theory of diffraction method and the pulsed plane wave representation of an X-wave. The latter allows the calculation of the diffraction and scattering of each pulsed plane wave component of the incident X-wave at the observation point. The superposition of the individual diffracted and scattered pulsed plane wave components yields the diffracted and scattered field due to an incident X-wave. First, the scattering from a perfectly conducting infinite wedge is studied. Then, the case of a circular conducting disk is considered as an example of a finite scatterer. Numerical results illustrating the effectiveness of the approach, as well as an estimate of the limits of its applicability, are provided.
ISSN:1559-8985
1070-4698
1559-8985
DOI:10.2528/PIER02052403