© 2018 The Author(s). A wide bandwidth, ultra-thin, metasurface is reported that facilitates wide angle beam scanning. Each unit cell of the metasurface contains a multi-resonant, strongly-coupled unequal arm Jerusalem cross element. This element consists of two bent-arm, orthogonal, capacitively loaded strips. The wide bandwidth of the metasurface is achieved by taking advantage of the strong coupling within and between its multi-resonant elements. A prototype of the proposed metasurface has been fabricated and measured. The design concept has been validated by the measured results. The proposed metasurface is able to alleviate the well-known problem of impedance mismatch caused by mutual coupling when the main beam of an array is scanned....
This is the final version. Available from American Physical Society via the DOI in this record.We pr...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
A novel shared aperture metasurface (SA-MS) for ultra-wideband radar cross section (RCS) reduction i...
© Institution of Engineering and Technology.All Rights Reserved. A wide bandwidth, low profile, doub...
© 2016 IEEE. The agile beam scanning ability is attractive feature of phased array over traditional ...
This paper presents two metamaterial-inspired solutions to mitigate the scan blindness effects in a ...
This paper presents new designs, implementation and experiments of metasurface (MTS) antennas consti...
For wide-angle scanning planar arrays, the magnitude of the reflection coefficient may change substa...
This effort explored design of metasurface antennas and evaluated their suitability for ultra-wideba...
The effects of mutual coupling in beam scanning arrays increase degradation in gain as the beam is s...
In order to extend the performance of radar absorbing materials, it is necessary to design new struc...
In this paper we present a high-performance compact phased array antenna which is easy to integrate ...
The use of metamaterials to obtain a wideband wide angle impedance matching (WAIM) for compact phase...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
This is the final version. Available from American Physical Society via the DOI in this record.We pr...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
A novel shared aperture metasurface (SA-MS) for ultra-wideband radar cross section (RCS) reduction i...
© Institution of Engineering and Technology.All Rights Reserved. A wide bandwidth, low profile, doub...
© 2016 IEEE. The agile beam scanning ability is attractive feature of phased array over traditional ...
This paper presents two metamaterial-inspired solutions to mitigate the scan blindness effects in a ...
This paper presents new designs, implementation and experiments of metasurface (MTS) antennas consti...
For wide-angle scanning planar arrays, the magnitude of the reflection coefficient may change substa...
This effort explored design of metasurface antennas and evaluated their suitability for ultra-wideba...
The effects of mutual coupling in beam scanning arrays increase degradation in gain as the beam is s...
In order to extend the performance of radar absorbing materials, it is necessary to design new struc...
In this paper we present a high-performance compact phased array antenna which is easy to integrate ...
The use of metamaterials to obtain a wideband wide angle impedance matching (WAIM) for compact phase...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
This is the final version. Available from American Physical Society via the DOI in this record.We pr...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
A novel shared aperture metasurface (SA-MS) for ultra-wideband radar cross section (RCS) reduction i...