A quasi-continuous composite perfect electric conductor-perfect magnetic conductor metasurface and a systematic metasurface design process are proposed for the orbital angular momentum (OAM) generation. The metasurfaces reflect the incident left circularly polarized (LCP)/right circularly polarized (RCP) plane wave to RCP/LCP vortex beams carrying OAM at normal or oblique direction. Unlike conventional metasurfaces that are composed of discrete scatterers, the scatterers on the proposed metasurface form a quasi-continuous pattern. The patterning of the metasurface is calculated through grating vectors, and no optimization of single scatterer is required. Furthermore, the distortions from local-response discontinuity of discrete scatterers a...
In this paper, metasurfaces with both cross-polarization conversion and vortex beam-generating are p...
The spatial variation of vector vortex beams with arbitrary polarization states and orbital angular ...
Optical vortex (OV) can be used in the fields of optical manipulation and optical communication beca...
In this paper, we present the design procedure of modulated metasurface leaky-wave antennas (MMLWAs)...
Traditional technologies to generate and manipulate the orbital angular momentum (OAM) suffer from b...
The orbital angular momentum (OAM) transformation of optical vortex is realized upon using aluminum ...
From last two decade, there is an exponential growth in consumption of available bandwidth in the ra...
Electromagnetic waves carrying an orbital angular momentum (OAM) are of great interest. However, mos...
Vortex beams carrying orbital angular momentum (OAM) have attracted considerable attention for the d...
Controlling the wavefront and manipulating the polarization of the electromagnetic wave using an ult...
Orbital angular momentum (OAM) has received considerable attention regarding high-capacity communica...
We present a comprehensive review on the geometric-phase based metasurfaces for orbital angular mome...
A novel polarized reflectarray is designed, fabricated, and experimentally characterized to show its...
Metasurface offers a promising platform in the design of multifunctional devices owing to its unique...
© 2022 Hammad Ahmed et al., published by De Gruyter, Berlin/Boston 2022.Optical vortices (OVs) carry...
In this paper, metasurfaces with both cross-polarization conversion and vortex beam-generating are p...
The spatial variation of vector vortex beams with arbitrary polarization states and orbital angular ...
Optical vortex (OV) can be used in the fields of optical manipulation and optical communication beca...
In this paper, we present the design procedure of modulated metasurface leaky-wave antennas (MMLWAs)...
Traditional technologies to generate and manipulate the orbital angular momentum (OAM) suffer from b...
The orbital angular momentum (OAM) transformation of optical vortex is realized upon using aluminum ...
From last two decade, there is an exponential growth in consumption of available bandwidth in the ra...
Electromagnetic waves carrying an orbital angular momentum (OAM) are of great interest. However, mos...
Vortex beams carrying orbital angular momentum (OAM) have attracted considerable attention for the d...
Controlling the wavefront and manipulating the polarization of the electromagnetic wave using an ult...
Orbital angular momentum (OAM) has received considerable attention regarding high-capacity communica...
We present a comprehensive review on the geometric-phase based metasurfaces for orbital angular mome...
A novel polarized reflectarray is designed, fabricated, and experimentally characterized to show its...
Metasurface offers a promising platform in the design of multifunctional devices owing to its unique...
© 2022 Hammad Ahmed et al., published by De Gruyter, Berlin/Boston 2022.Optical vortices (OVs) carry...
In this paper, metasurfaces with both cross-polarization conversion and vortex beam-generating are p...
The spatial variation of vector vortex beams with arbitrary polarization states and orbital angular ...
Optical vortex (OV) can be used in the fields of optical manipulation and optical communication beca...