Metasurface antennas have been proposed for computational imaging (CI) systems, which can reconstruct images without using mechanical scanning or large antenna arrays. In a CI system based on metasurface antennas, a variety of different radiation fields, which can be applied to sample the objects, are generated by exciting different frequency points in broadband. According to the compressed sensing theory, the imaging performance of the system is mainly limited by frequency-diversity radiation modes. In general, it is difficult to achieve rich radiation modes; therefore, a special design of metasurface aperture is required. In this paper, we propose a frequency-diversity MIMO metasurface antenna that consists of 2 × 2 sub-apertures with ran...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
<p>Metamaterials extend the design space, flexibility, and control of optical material systems and s...
This article presents a holographic metasurface antenna with stochastically distributed surface impe...
A metamaterial aperture antenna (MAA) that generates frequency-diverse radiation field patterns has ...
A metamaterial aperture antenna (MAA) that generates frequency-diverse radiation field patterns has ...
Brunel University London Research Development Fund (Grant Number: LBG194); 2022/2023 Brunel Resear...
This thesis presents the applications of metasurface (MS) in the design of reconfigurable antennas, ...
The programmable and digital metamaterials or metasurfaces presented recently have huge potentials i...
We demonstrate that dynamic metasurface apertures (DMAs) are capable of generating a multitude of hi...
International audienceIn this paper, a frequency-diverse computational polarimetric imaging system i...
International audienceIn this paper, a frequency-diverse computational polarimetric imaging system i...
We demonstrate that dynamic metasurface apertures (DMAs) are capable of generating a multitude of hi...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
<p>Metamaterials extend the design space, flexibility, and control of optical material systems and s...
This article presents a holographic metasurface antenna with stochastically distributed surface impe...
A metamaterial aperture antenna (MAA) that generates frequency-diverse radiation field patterns has ...
A metamaterial aperture antenna (MAA) that generates frequency-diverse radiation field patterns has ...
Brunel University London Research Development Fund (Grant Number: LBG194); 2022/2023 Brunel Resear...
This thesis presents the applications of metasurface (MS) in the design of reconfigurable antennas, ...
The programmable and digital metamaterials or metasurfaces presented recently have huge potentials i...
We demonstrate that dynamic metasurface apertures (DMAs) are capable of generating a multitude of hi...
International audienceIn this paper, a frequency-diverse computational polarimetric imaging system i...
International audienceIn this paper, a frequency-diverse computational polarimetric imaging system i...
We demonstrate that dynamic metasurface apertures (DMAs) are capable of generating a multitude of hi...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
International audienceImaging systems in the microwave range aim to reconstruct the spatial distribu...
<p>Metamaterials extend the design space, flexibility, and control of optical material systems and s...