The design of a thin microwave absorber which exhibits a −10 dB reflectivity bandwidth of 108% at normal incidence and 16% for simultaneous suppression of TE and TM polarised waves over the angular range 0–45° is presented. The structure consists of a 3 mm-thick metal backed frequency selective surface (FSS) with four resistively loaded hexagonal loop elements in each unit cell. The surface resistivity and width of the loops are carefully chosen to maximise the bandwidth by merging the reflection nulls that are generated by the multi-resonant absorber. Measurement and simulation results are in good agreement over the broad frequency range 7.8–24 GHz. Introduction
A wideband, ultra-thin, wide-angle and polarization-insensitive metamaterial absorber with a single-...
Frequency Selective Surface (FSS) is an assortment of regular repeated structures which can be util...
An experimental single-layer active microwave absorber in described. The absorber is a planar struct...
In this paper we report on a resistively loaded Frequency Selective Surface (FSS) absorber design wh...
This study presents the design of a thin electromagnetic absorber which exhibits radar backscatter s...
Abstract—To achieve broadband microwave absorption, a three-layer structure is designed and manufact...
The purpose of this study was to develop new FSS based microwave absorber designs to minimise the ph...
Abstract A novel design for an ultra-wide bandwidth and thin microwave absorber is introduced utiliz...
A novel Frequency Selective Surface (FSS) is proposed for the design of polarization-insensitive met...
Absorbing materials are important to many structures and systems in the defense industry. Frequency ...
Frequency selective surfaces (FSSs) are electromagnetic spatial filters designed to pass or block pa...
A miniaturized frequency selective rasorber (FSR) with high selectivity passband and wideband absorp...
A three-layer frequency selective surface (FSS) filter is presented that over a narrow frequency ban...
This Letter presents a design of a polarisation-dependent resistorloaded resonant absorber at microw...
Microwave radar absorbers are widely used in the strategic sector and wireless communication systems...
A wideband, ultra-thin, wide-angle and polarization-insensitive metamaterial absorber with a single-...
Frequency Selective Surface (FSS) is an assortment of regular repeated structures which can be util...
An experimental single-layer active microwave absorber in described. The absorber is a planar struct...
In this paper we report on a resistively loaded Frequency Selective Surface (FSS) absorber design wh...
This study presents the design of a thin electromagnetic absorber which exhibits radar backscatter s...
Abstract—To achieve broadband microwave absorption, a three-layer structure is designed and manufact...
The purpose of this study was to develop new FSS based microwave absorber designs to minimise the ph...
Abstract A novel design for an ultra-wide bandwidth and thin microwave absorber is introduced utiliz...
A novel Frequency Selective Surface (FSS) is proposed for the design of polarization-insensitive met...
Absorbing materials are important to many structures and systems in the defense industry. Frequency ...
Frequency selective surfaces (FSSs) are electromagnetic spatial filters designed to pass or block pa...
A miniaturized frequency selective rasorber (FSR) with high selectivity passband and wideband absorp...
A three-layer frequency selective surface (FSS) filter is presented that over a narrow frequency ban...
This Letter presents a design of a polarisation-dependent resistorloaded resonant absorber at microw...
Microwave radar absorbers are widely used in the strategic sector and wireless communication systems...
A wideband, ultra-thin, wide-angle and polarization-insensitive metamaterial absorber with a single-...
Frequency Selective Surface (FSS) is an assortment of regular repeated structures which can be util...
An experimental single-layer active microwave absorber in described. The absorber is a planar struct...