Major challenges affecting polarizers for communication systems include the inability to perform over a wide bandwidth with a simple design. Orthogonal outgoing polarization for polarization-diverse applications and stable performances for oblique incidence angles are also major requirements. This paper presents the design of a polarizer that can perform over a wide range of bandwidths in dual frequency bands. The unit cell is uniquely designed using a split circular ring resonator enclosed in a square ring with the addition of three-square patches. As a result, the incoming linearly polarized x(y) wave is converted into a transmitted LHCP (RHCP) wave in the Ku and Ka bands. The operational bandwidths are 11.05~16.75 GHz (41%) and 34.16~43....
Circular polarization is valuable for many electromagnetic radiation applications such as wireless a...
In this paper, we present a simple metasurface based multiband reflective polarization converter for...
In this article, a single-layer metasurface based reflector design is proposed for linear-to-linear ...
Major challenges affecting polarizers for communication systems include the inability to perform ove...
In this paper, an ultra-wideband (UWB) polarizer with high performance based on the metasurface is d...
International audienceA systematic procedure for the design of dual-band, dual-polarized linear-to-c...
In this paper, we present a wide band metasurface (MS) polarization converter which converts a linea...
International audienceWe present a method to design planar broadband and broad-angle multilayer pola...
A new design of dual circular polarizer is presented in this paper. This innovative design converts ...
We present a 33–50 GHz circular waveguide polarizer based on a broadband combination of retarders. T...
A transmission polarizer is described that is based on an anisotropic impedance surfaces to convert ...
A transmission polarizer is described that is based on an anisotropic impedance surfaces to convert ...
International audienceThis paper describes the performance of dual circularly-polarized transmitarra...
A three-layer circular polarization selective surface operating in Ku-band is proposed in this commu...
International audienceA systematic design of dual-band, orthogonallypolarized linear-to-circular pol...
Circular polarization is valuable for many electromagnetic radiation applications such as wireless a...
In this paper, we present a simple metasurface based multiband reflective polarization converter for...
In this article, a single-layer metasurface based reflector design is proposed for linear-to-linear ...
Major challenges affecting polarizers for communication systems include the inability to perform ove...
In this paper, an ultra-wideband (UWB) polarizer with high performance based on the metasurface is d...
International audienceA systematic procedure for the design of dual-band, dual-polarized linear-to-c...
In this paper, we present a wide band metasurface (MS) polarization converter which converts a linea...
International audienceWe present a method to design planar broadband and broad-angle multilayer pola...
A new design of dual circular polarizer is presented in this paper. This innovative design converts ...
We present a 33–50 GHz circular waveguide polarizer based on a broadband combination of retarders. T...
A transmission polarizer is described that is based on an anisotropic impedance surfaces to convert ...
A transmission polarizer is described that is based on an anisotropic impedance surfaces to convert ...
International audienceThis paper describes the performance of dual circularly-polarized transmitarra...
A three-layer circular polarization selective surface operating in Ku-band is proposed in this commu...
International audienceA systematic design of dual-band, orthogonallypolarized linear-to-circular pol...
Circular polarization is valuable for many electromagnetic radiation applications such as wireless a...
In this paper, we present a simple metasurface based multiband reflective polarization converter for...
In this article, a single-layer metasurface based reflector design is proposed for linear-to-linear ...