K
Krzysztof A. Michalski
Researcher at Texas A&M University
Publications - 112
Citations - 3834
Krzysztof A. Michalski is an academic researcher from Texas A&M University. The author has contributed to research in topics: Integral equation & Microstrip. The author has an hindex of 22, co-authored 103 publications receiving 3449 citations. Previous affiliations of Krzysztof A. Michalski include University of Mississippi.
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Multilayered media Green's functions in integral equation formulations
TL;DR: In this paper, a compact representation of the electric and magnetic-type dyadic Green's functions for plane-stratified, multilayered, uniaxial media based on the transmission-line network analog along the aids normal to the stratification is given.
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Electromagnetic scattering and radiation by surfaces of arbitrary shape in layered media. I. Theory
TL;DR: In this paper, an accurate and general procedure for the analysis of electromagnetic radiation and scattering by perfectly conducting objects of arbitrary shape embedded in a medium consisting of an arbitrary number of planar dielectric layers is developed.
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Extrapolation methods for Sommerfeld integral tails
TL;DR: In this article, a review of the extrapolation methods for accelerating the convergence of Sommerfeld-type integrals is presented, which arise in problems involving antennas or scatterers embedded in planar multilayered media.
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Electromagnetic scattering and radiation by surfaces of arbitrary shape in layered media. II. Implementation and results for contiguous half-spaces
TL;DR: In this article, three mixedpotential electric field integral equations (MPIEs) for conducting surfaces of arbitrary shape residing in plane-stratified dielectric media with an arbitrary number of layers were formulated.
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The Sommerfeld half-space problem revisited: from radio frequencies and Zenneck waves to visible light and Fano modes
TL;DR: In this paper, the authors revisited the classical Sommerfeld half-space problem, with generalizations to multilayer and plasmonic media and focus on the surface field computation.