Generalized Ray Theory for Time-Domain Electromagnetic Fields in Horizontally Layered Media

Generalized-ray theory for time-domain electromagnetic fields in a horizontally layered medium is developed. It can be considered as the time-domain equivalent of the intensively studied Green's function formulation in frequency domain. After introducing appropriate integral transformations and...

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Veröffentlicht in:IEEE transactions on antennas and propagation 2013-05, Vol.61 (5), p.2676-2687
Hauptverfasser: Stumpf, M., De Hoop, A. T., Vandenbosch, G. A. E.
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De Hoop, A. T.
Vandenbosch, G. A. E.
description Generalized-ray theory for time-domain electromagnetic fields in a horizontally layered medium is developed. It can be considered as the time-domain equivalent of the intensively studied Green's function formulation in frequency domain. After introducing appropriate integral transformations and source-type field representations, the solution is written out in terms of generalized ray constituents whose space-time counterparts are constructed with the aid of the Cagniard-DeHoop technique. The formulation lays the foundation to rigorously study time-domain field behavior in numerous practical topologies where a stratified multilayer is involved, such as planar antennas and circuits, but also electromagnetic compatibility (EMC) and propagation problems. Illustrative numerical results are presented.
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subjects Antennas
Applied sciences
Cagniard-DeHoop method
Equations
Exact sciences and technology
Green's function methods
Magnetic domains
Media
Radiocommunications
stratified medium
Telecommunications
Telecommunications and information theory
Tensile stress
time domain
Time domain analysis
title Generalized Ray Theory for Time-Domain Electromagnetic Fields in Horizontally Layered Media
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