International audienceIn this paper, we propose a novel design of an ultra-wideband hybrid microwave absorber operating in the frequency range between 2 GHz and 18 GHz. This proposed hybrid absorber is composed of two different layers that integrate a multiband metamaterial absorber and a lossy dielectric layer. The metamaterial absorber consists of a periodic pattern that is composed of an arrangement of different scales of coupled resonators and a metallic ground plane, and the dielectric layer is made of epoxy foam composite loaded with low weight percentage (0.075 wt.%) of 12 mm length carbon fibers. The numerical results show a largely expanded absorption bandwidth that ranges from 2.6 GHz to 18 GHz with incident angles between 0◦ and ...
In this article, a simple metamaterial absorber (MMA) is presented aiming absorption of microwave si...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
This article proposes a multiband metamaterial microwave absorber based on a split ring-slot structu...
International audienceIn this paper, we propose a novel design of an ultra-wideband hybrid microwave...
Broadening the bandwidth of electromagnetic wave absorbers has greatly challenged material scientist...
The metamaterial absorber’s new conception and simulation are presented in this paper. Two peaks of ...
Flexible and ultrathin wide-band metamaterial absorbers are suggested and demonstrated in the microw...
Ce travail de thèse porte sur la conception, la réalisation et la mesure d’absorbants microondes. Pl...
Broadband electromagnetic (EM) wave absorbers are persistently desired in the past decades due to th...
This article reports an ultra-thin, compact metamaterial absorber with wideband absorption at microw...
Abstract A simple design of compact ultra-wideband, ultra-thin metamaterial microwave absorber has b...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
We suggest that ultrathin broadband metamaterial is a perfect absorber in the microwave regime by ut...
International audienceA planar microwave ultrathin broadband absorber is proposed. It is composed of...
In order to extend the performance of radar absorbing materials, it is necessary to design new struc...
In this article, a simple metamaterial absorber (MMA) is presented aiming absorption of microwave si...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
This article proposes a multiband metamaterial microwave absorber based on a split ring-slot structu...
International audienceIn this paper, we propose a novel design of an ultra-wideband hybrid microwave...
Broadening the bandwidth of electromagnetic wave absorbers has greatly challenged material scientist...
The metamaterial absorber’s new conception and simulation are presented in this paper. Two peaks of ...
Flexible and ultrathin wide-band metamaterial absorbers are suggested and demonstrated in the microw...
Ce travail de thèse porte sur la conception, la réalisation et la mesure d’absorbants microondes. Pl...
Broadband electromagnetic (EM) wave absorbers are persistently desired in the past decades due to th...
This article reports an ultra-thin, compact metamaterial absorber with wideband absorption at microw...
Abstract A simple design of compact ultra-wideband, ultra-thin metamaterial microwave absorber has b...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
We suggest that ultrathin broadband metamaterial is a perfect absorber in the microwave regime by ut...
International audienceA planar microwave ultrathin broadband absorber is proposed. It is composed of...
In order to extend the performance of radar absorbing materials, it is necessary to design new struc...
In this article, a simple metamaterial absorber (MMA) is presented aiming absorption of microwave si...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
This article proposes a multiband metamaterial microwave absorber based on a split ring-slot structu...