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Design of a Novel Double Negative Metamaterial Absorber Atom for Ku and K Band Applications

TLDR
In this article, a multiband metamaterial (MM) absorber based on a novel spiral resonator with continuous, dual, and opposite P-shape was proposed for TEM mode.
Abstract
This paper presents a multiband metamaterial (MM) absorber based on a novel spiral resonator with continuous, dual, and opposite P-shape. The full wave analysis shows 80.06% to 99.95% absorption at frequencies range for Ku and K bands for several substrate materials of 100 mm2 area. The results indicate that the absorption rate remains similar for different polarizing angles in TEM mode with different substrates. With FR4 (Flame Retardant 4) substrate and 64 mm2 ground plane, the design acts as single negative (SNG) MM absorber in K band resonance frequencies (19.75–21.37 GHz) and acts as double negative (DNG) absorber in Ku band resonance frequencies (15.28–17.07 GHz). However, for Rogers 3035 substrate and 36 mm2 ground plane, it acts as an SNG absorber for Ku band resonance frequency 14.64 GHz with 83.25% absorption and as a DNG absorber for K band frequencies (18.24–16.15 GHz) with 83.69% to 94.43% absorption. With Rogers 4300 substrate and 36 mm2 ground plane, it acts as an SNG absorber for Ku band at 15.04 GHz with 89.77% absorption and as DNG absorber for K band frequencies (22.17–26.88 GHz) with 92.87% to 93.72% absorption. The design was fabricated with all three substrates and showed quite similar results as simulation. In comparison with other broadband absorbers, this proposed MM absorber illustrated broad incidence angles in TEM mode.

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Citations
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Journal ArticleDOI

Design and parametric analysis of a wide-angle polarization-insensitive metamaterial absorber with a star shape resonator for optical wavelength applications

TL;DR: In this paper, a new wide-angle, polarization-insensitive metamaterial absorber was presented, which was formatted with three layers that consisted of a sandwiched metal-dielectric-metal structure.
Journal ArticleDOI

Quad band metamaterial absorber based on asymmetric circular split ring resonator for multiband microwave applications

TL;DR: In this paper, a modified asymmetric circular split ring resonator was proposed for microwave applications. But the resonator of the unit cell is structured with three concentric intercoupled circular split rings with dimensions modified to obtain maximum absorption peaks of 97.9%, 99.1, 99.5%, and 99.95% at 4.1 GHz.
Journal ArticleDOI

Wide Bandwidth Angle- and Polarization-Insensitive Symmetric Metamaterial Absorber for X and Ku Band Applications.

TL;DR: A wide bandwidth angle- and polarization-insensitive symmetric metamaterial (MM) absorber for X and Ku band shows high absorption at different polarizing angles due to structural symmetry, and a four-fold resonator was introduced in the unit cell to enhance the bandwidth.
Journal ArticleDOI

A Metasurface-Based, Ultrathin, Dual-Band, Linear-to-Circular, Reflective Polarization Converter: Easing uplinking and downlinking for wireless communication

TL;DR: In this paper, an ultrathin (+m/15), dual-band, reflective-type linear-tocircular (LTC) electromagnetic (EM) wave-polarization converter is reported.
Journal ArticleDOI

Polarization insensitivity characterization of dual-band perfect metamaterial absorber for K band sensing applications.

TL;DR: In this paper, a dual-band polarization-insensitive metamaterial absorber (MA) for K-band applications is presented, which consists of two modified split ring resonators with an inner cross conductor to achieve a 90% absorption bandwidth of 400 MHz (21.4-21.8 GHz) and 760 MHz (23.84-24.24 GHz).
References
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Journal ArticleDOI

Perfect metamaterial absorber.

TL;DR: This work fabricate, characterize, and analyze a MM absorber with a slightly lower predicted A(omega) of 96%.
Journal ArticleDOI

Ultrathin multiband gigahertz metamaterial absorbers

TL;DR: In this paper, the authors proposed ultrathin multiband metamaterial absorbers in the microwave frequencies in which the design, analysis, fabrication, and measurement of the absorbers working in multiple bands are presented.
Journal ArticleDOI

Bandwidth-enhanced and polarisation-insensitive metamaterial absorber using double resonance

TL;DR: In this paper, a bandwidth-enhanced microwave absorber using a double resonant metamaterial is presented, which has a thin configuration and its performance is constant for different polarisations.
Journal ArticleDOI

Design, fabrication and measurement of a broadband polarization-insensitive metamaterial absorber based on lumped elements

TL;DR: In this article, a broadband metamaterial absorber (MA) based on lumped elements is presented, which is composed of the dielectric substrate sandwiched with metal split-coin resonators welded with lumped element and continuous metal film, and the experiment results show that the bandwidth of absorption of 90% is about 1.5 GHz and the full width at half maximum (FWHM) can be up to 50%.
Journal ArticleDOI

Design of Miniaturized Narrowband Absorbers Based on Resonant-Magnetic Inclusions

TL;DR: In this article, a planar array of magnetic inclusions behaves at its resonance as a perfect magnetic conductor, and a resistive sheet is placed in close proximity of the resonating inclusions, without perturbing their resonance condition.
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