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Electromagnetic Wave Propagation, Radiation, and Scattering

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TLDR
In this article, the fundamental field equations of wave propagation in homogeneous and layered media waveguides and cavities have been studied, including the effects of a dipole on the conducting earth, inverse scattering radiometry, and interferometry numerical techniques.
Abstract
Fundamental field equations waves in homogeneous and layered media waveguides and cavities Green's functions radiation from apertures and beam waves periodic structures and coupled mode theory dispersion and anisotropic media antennas, apertures and arrays scattering of waves by conducting and di-electric objects waves in cylindrical structures, spheres and wedges scattering of complex objects geometric theory of diffraction and low fequency techniques planar layers, strip lines, patches and apertures radiation from a dipole on the conducting earth, inverse scattering radiometry, noise temperature and interferometry numerical techniques.

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Dissertation

Difracção espacial e dispersão temporal: estudo unificado

TL;DR: Marinho et al. as discussed by the authors presented a theoretical study of the electromagnetic radiation propagation in two distinct optical regimes; in the space diffraction regime of monochromatic light waves and in the dispersive media propagation regime of ultrashort optical pulses.
Proceedings ArticleDOI

Dominant lateral waves of radio communication in layered anisotropic forest environment

TL;DR: In this article, a four-layered forest geometry with two anisotropic slabs representing canopy and trunk is used for the investigation of wave characteristics in a forest environment, in which the transmitter is embedded inside the canopy layer, while the receiving point is located in the trunk layer.

Scan Impedance for an Infinite Dipole Array: Accurate Theoretical Model Compared to Numerical Software

TL;DR: A theoretical model of VanKoughnett and Yen for an infinite planar dipole array has been revised and extended to the case of a finite feeding gap with finite dipole spacing and the agreement among three approaches was generally very good in all scan planes.
Journal ArticleDOI

Dielectric scattering from a cylinder embedded in a layered medium

TL;DR: In this article, the dyadic Green's function for a horizontally stratified dielectric medium is computed for the case of a cylinder buried in the middle of a five-layer space for various cases of plane wave excitation.
Proceedings ArticleDOI

FDTD simulation of high-intensity, ultrashort laser pulses for X-ray generation

D. Sullivan
TL;DR: In this paper, a simulation procedure using the finite-difference time-domain (FDTD) method is developed to simulate the interaction of a plane wave impinging on a surface with gratings of various sizes and depths.