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A K-space method of moments solution for the aperture electromagnetic fields of a circular cylindrical waveguide radiating into an anisotropic dielectric half-space

A method of moments solution is presented for the problem of determining the electromagnetic aperture fields that occur when a circular cylindrical waveguide radiates into an anisotropic dielectric-covered ground plane. The method of moments solution is derived by using a reaction matching technique...

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Published in:IEEE transactions on antennas and propagation 1989-02, Vol.37 (2), p.187-193
Main Authors: Jarem, J.M., To, F.
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Language:English
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container_title IEEE transactions on antennas and propagation
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description A method of moments solution is presented for the problem of determining the electromagnetic aperture fields that occur when a circular cylindrical waveguide radiates into an anisotropic dielectric-covered ground plane. The method of moments solution is derived by using a reaction matching technique and by using K-space theory to develop the aperture matrix elements of the system. An example of radiation into an anisotropic dielectric is given. The anisotropic dielectric for this example is assumed to be formed by the presence of a static magnetic field placed within a plasma.< >
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subjects Anisotropic magnetoresistance
Antennas
Apertures
Applied sciences
Dielectrics
Electromagnetic fields
Electromagnetic radiation
Electromagnetic scattering
Electromagnetic waveguides
Exact sciences and technology
Moment methods
Planar waveguides
Radiocommunications
Telecommunications
Telecommunications and information theory
Transmission line matrix methods
title A K-space method of moments solution for the aperture electromagnetic fields of a circular cylindrical waveguide radiating into an anisotropic dielectric half-space
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