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Analysis and Design of Ultra Thin Electromagnetic Absorbers Comprising Resistively Loaded High Impedance Surfaces

IEEE Transactions on Antennas and Propagation · 2010 · Vol. 58(5) · pp. 1551–1558
Filippo CostaAgostino MonorchioGiuliano Manara

Abstract

High-impedance surfaces (HIS) comprising lossy frequency selective surfaces (FSS) are employed to design thin electromagnetic absorbers. The structure, despite its typical resonant behavior, is able to perform a very wideband absorption in a reduced thickness. Losses in the frequency selective surface are introduced by printing the periodic pattern through resistive inks and hence avoiding the typical soldering of a large number of lumped resistors. The effect of the surface resistance of the FSS and dielectric substrate characteristics on the input impedance of the absorber is discussed by means of a circuital model. It is shown that the optimum value of surface resistance is affected both by substrate parameters (thickness and permittivity) and by FSS element shape. The equivalent circuit model is then used to introduce the working principles of the narrowband and the wideband absorbing structure and to derive the best-suited element for wideband absorption.

Advanced Antenna and Metasurface TechnologiesAntenna Design and AnalysisElectromagnetic wave absorption materialsMaterials scienceWidebandResistorResistive touchscreenElectrical impedanceEquivalent circuitPermittivityAcousticsOptoelectronicsDielectric
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IEEE Transactions on Antennas and Propagation · 1988 · 744 citations
Thin AMC Structure for Radar Cross-Section Reduction
IEEE Transactions on Antennas and Propagation · 2007 · 686 citations
Ultimate thickness to bandwidth ratio of radar absorbers
IEEE Transactions on Antennas and Propagation · 2000 · 782 citations
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