Modified Theory of Physical Optics Approach to Diffraction by an Interface between PEMC and Absorbing Half-Planes
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Date
2021
Authors
Umul, Yusuf Z.
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Abstract
The scattering of electromagnetic plane waves by an interface, located between perfect electromagnetic conductor and absorbing half-planes, is investigated. The perfect electromagnetic conductor half-plane is divided into perfect electric conductor and perfect magnetic conductor half-screens. The same decomposition is done for the absorbing surface. Then four different geometries are defined according to this approach. The scattered fields by the four sub-problems are obtained with the aid of the modified theory of physical optics. The resultant scattering integrals are combined in a single expression by using key formulas, defined for the perfect electromagnetic conductor and absorbing surfaces. The diffracted and geometric optics fields are obtained by the asymptotic evaluation of the scattering integral for large values of the wave-number. The behaviors of the derived field expressions are analyzed numerically. © 2021, Advanced Electromagnetics. All rights reserved.
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Keywords
Diffraction Theory, High-Frequency Techniques, Modified Theory of Physical Optics, Perfect Absorber, Perfect Electromagnetic Conductor
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Citation
Umul, Yusuf Z...at all (2021). "Modified Theory of Physical Optics Approach to Diffraction by an Interface between PEMC and Absorbing Half-Planes", Advanced Electromagnetics, Vol. 10, No. 2, pp. 78-84.
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Source
Advanced Electromagnetics
Volume
10
Issue
2
Start Page
78
End Page
84