Space-time Metallic Metasurfaces for Frequency Conversion and Beamforming

Fuente: arXiv
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Autori principali: Moreno-Rodríguez, Salvador, Alex-Amor, Antonio, Padilla, Pablo, Valenzuela-Valdés, Juan F., Molero, Carlos
Natura: Preprint
Pubblicazione: 2023
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author Moreno-Rodríguez, Salvador
Alex-Amor, Antonio
Padilla, Pablo
Valenzuela-Valdés, Juan F.
Molero, Carlos
author_facet Moreno-Rodríguez, Salvador
Alex-Amor, Antonio
Padilla, Pablo
Valenzuela-Valdés, Juan F.
Molero, Carlos
contents This paper details a class of metal-based space-time metasurfaces for application in wireless communications scenarios. Concretely, we describe space-time metasurfaces that periodically alternate their properties in time between three spatial states: "air", "conductor" and "grating". We analyze the physics of these metastructures via a computationally-efficient analytical technique based on the use of Floquet-Bloch series, integral equations and circuit models. By doing so, we reveal important features of these spatiotemporal metasurfaces: scattering parameters, field profiles, diffraction angles and nature of the space-time harmonics. The results, corroborated with a self-implemented numerical FDTD approach, show the potential application of these space-time metasurfaces as beamformers acting in reflection, in transmission or both. The amplitude and direction of the diffracted orders can be electronically controlled with the paramaters of the metasurface. Moreover, the intrinsic ability of time-modulated diffractive metasurfaces to mix and multiply frequencies is tested. We show how two different modulations can lead to the same diffraction angle but with different mixed output frequencies.
format Preprint
id arxiv_https___arxiv_org_abs_2312_16491
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Space-time Metallic Metasurfaces for Frequency Conversion and Beamforming
Moreno-Rodríguez, Salvador
Alex-Amor, Antonio
Padilla, Pablo
Valenzuela-Valdés, Juan F.
Molero, Carlos
Applied Physics
This paper details a class of metal-based space-time metasurfaces for application in wireless communications scenarios. Concretely, we describe space-time metasurfaces that periodically alternate their properties in time between three spatial states: "air", "conductor" and "grating". We analyze the physics of these metastructures via a computationally-efficient analytical technique based on the use of Floquet-Bloch series, integral equations and circuit models. By doing so, we reveal important features of these spatiotemporal metasurfaces: scattering parameters, field profiles, diffraction angles and nature of the space-time harmonics. The results, corroborated with a self-implemented numerical FDTD approach, show the potential application of these space-time metasurfaces as beamformers acting in reflection, in transmission or both. The amplitude and direction of the diffracted orders can be electronically controlled with the paramaters of the metasurface. Moreover, the intrinsic ability of time-modulated diffractive metasurfaces to mix and multiply frequencies is tested. We show how two different modulations can lead to the same diffraction angle but with different mixed output frequencies.
title Space-time Metallic Metasurfaces for Frequency Conversion and Beamforming
topic Applied Physics
url https://arxiv.org/abs/2312.16491