Two Solution Techniques for the Problem of Diffraction of a Plane Wave by a Revolution Body Located in a Dielectric Half-Space

Two techniques for calculation of the problem of diffraction of a plane wave by a dielectric revolution body located in a homogeneous dielectric half-space are suggested. The case, in which the permittivity of the medium inside the body is the coordinate function independent of the angular coordinat...

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Veröffentlicht in:Journal of communications technology & electronics 2019-10, Vol.64 (10), p.1055-1064
1. Verfasser: Manenkov, S. A.
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description Two techniques for calculation of the problem of diffraction of a plane wave by a dielectric revolution body located in a homogeneous dielectric half-space are suggested. The case, in which the permittivity of the medium inside the body is the coordinate function independent of the angular coordinate in the cylindrical coordinate system, is considered. When the first technique is used (in the case of a homogeneous medium of the body), the discrepancy of the boundary condition on the contour of the axial section of the body is constructed. Two methods are compared using the example of the problem of the plane wave scattering by a homogeneous sphere and circular cylinder of finite dimensions that are located in a half-space. The results of calculation of the field scattering pattern are presented for the case of diffraction by a finite circular cylinder having variable material characteristics.
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subjects Boundary conditions
Circular cylinders
Communications Engineering
Coordinates
Cylindrical coordinates
Dielectrics
Diffraction patterns
Electrodynamics and Wave Propagation
Engineering
Half spaces
Mathematical analysis
Networks
Plane waves
Wave diffraction
Wave scattering
title Two Solution Techniques for the Problem of Diffraction of a Plane Wave by a Revolution Body Located in a Dielectric Half-Space
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