Full-Duplex Nonreciprocal-Beam-Steering Metasurfaces Comprising Time-Modulated Twin Meta-Atoms
arXiv:1911.04033 · doi:10.1103/PhysRevApplied.14.014027
Abstract
We present the concept, theoretical model and experimental implementation of a full-duplex nonreciprocal-beam-steering transmissive phase-gradient metasurface. Such a metasurface is realized by exploiting the unique properties of the frequency-phase transition in coupled time-modulated twin meta-atoms. The metasurface may be placed on top of a source antenna to transform the radiation pattern of the source antenna, and introduce different radiation patterns for the transmit and receive states. In contrast to the recently proposed applications of time modulation, here the incident and transmitted waves share the same frequency. The metasurface is endowed with directive, diverse and asymmetric transmission and reception radiation beams, and tunable beam shapes. Furthermore, these beams can be steered by simply changing the modulation phase. The proposed coupled meta-atoms inherently suppress undesired time harmonics, leading to a high conversion efficiency which is of paramount importance for practical applications such as point to point full-duplex communications.
References in corpus (7)
- Non-Reciprocal Brillouin Scattering Induced Transparency
- Nonreciprocal Metasurface with Space-Time Phase Modulation
- Fresnel drag in space-time modulated metamaterials
- Generalized Space-Time Periodic Diffraction Gratings: Theory and Applications
- Non-reciprocal sound propagation in space-time modulated media
- Dynamic Modulation Yields One-Way Beam Splitting
- Nonreciprocal Yagi-Uda Filtering Antennas
Cited by in corpus (18)
- Full-duplex Reflective Beamsteering Metasurface Featuring Magnetless Nonreciprocal Amplification
- Space-Time Modulated Metasurfaces with Spatial Discretization: Free-Space N-path Systems
- Pure and Linear Frequency Converter Temporal Metasurface
- Floquet Analysis of Space-Time Modulated Huygens' Metasurfaces with Lorentz Dispersion
- Multi-functional metasurface architecture for amplitude, polarization and wavefront control
- Wave-based extreme deep learning based on non-linear time-Floquet entanglement
- Programming nonreciprocity and harmonic beam steering via a digitally space-time-coded metamaterial antenna
- Four-Dimensional Wave Transformations By Space-Time Metasurfaces
- Space-time Metallic Metasurfaces for Frequency Conversion and Beamforming
- Rapidly time-varying reconfigurable intelligent surfaces for downlink multiuser transmissions
- Magnetless Reflective Gyrotropic Spatial Isolator Metasurface
- One-dimensional time-Floquet photonic crystal
- Parametric metasurfaces for electromagnetic wave amplification
- Parametric metasurfaces for amplified up-conversion of electromagnetic waves
- Intelligent-Metasurface-Assisted Full-Duplex Wireless Communications
- Nonreciprocal-Beam Phased-Array Antennas
- Transient States to Control the Electromagnetic Response of Space-time Dispersive Media
- Highly Linear Nonmagnetic Circulator Enabled By A Temporal Nonreciprocal Phase Shifter