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Auteurs principaux: Negri, Edoardo, Giusti, Federico, Fuscaldo, Walter, Burghignoli, Paolo, Martini, Enrica, Galli, Alessandro
Format: Preprint
Publié: 2024
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Accès en ligne:https://arxiv.org/abs/2412.13338
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author Negri, Edoardo
Giusti, Federico
Fuscaldo, Walter
Burghignoli, Paolo
Martini, Enrica
Galli, Alessandro
author_facet Negri, Edoardo
Giusti, Federico
Fuscaldo, Walter
Burghignoli, Paolo
Martini, Enrica
Galli, Alessandro
contents Open stop-band (OSB) mitigation techniques are commonly used to improve the far-field radiating properties of leakywave antennas based on periodic structures. Recently, leaky waves have been proposed to focus energy in the near field through Bessel beams. However, the focusing character of Bessel beams is notably limited to a maximum distance known as the nondiffractive range. In this work, an OSB mitigation technique is originally exploited to significantly extend the nondiffractive range of a Bessel beam generated by a leaky-wave launcher in the microwave/millimeter-wave range. A comprehensive analysis of this device is presented, comparing the performance of the proposed launcher with the typical structure of a leaky-wave Bessel-beam launcher where the OSB is not suppressed. Theoretical results corroborated by full-wave simulations demonstrate that the proposed device, designed around 30 GHz, achieves an impressive nondiffractive range of approximately 25 m, which corresponds to 2500 vacuum wavelengths and to 50 times its aperture diameter of 50 cm. These results look particularly attractive for, e.g., near-field communications and wireless power transfer applications, where focusing energy in narrow spots and over large distances is a key factor.
format Preprint
id arxiv_https___arxiv_org_abs_2412_13338
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Ultra-Long-Range Bessel Beams via Leaky Waves with Mitigated Open Stopband
Negri, Edoardo
Giusti, Federico
Fuscaldo, Walter
Burghignoli, Paolo
Martini, Enrica
Galli, Alessandro
Optics
Applied Physics
Open stop-band (OSB) mitigation techniques are commonly used to improve the far-field radiating properties of leakywave antennas based on periodic structures. Recently, leaky waves have been proposed to focus energy in the near field through Bessel beams. However, the focusing character of Bessel beams is notably limited to a maximum distance known as the nondiffractive range. In this work, an OSB mitigation technique is originally exploited to significantly extend the nondiffractive range of a Bessel beam generated by a leaky-wave launcher in the microwave/millimeter-wave range. A comprehensive analysis of this device is presented, comparing the performance of the proposed launcher with the typical structure of a leaky-wave Bessel-beam launcher where the OSB is not suppressed. Theoretical results corroborated by full-wave simulations demonstrate that the proposed device, designed around 30 GHz, achieves an impressive nondiffractive range of approximately 25 m, which corresponds to 2500 vacuum wavelengths and to 50 times its aperture diameter of 50 cm. These results look particularly attractive for, e.g., near-field communications and wireless power transfer applications, where focusing energy in narrow spots and over large distances is a key factor.
title Ultra-Long-Range Bessel Beams via Leaky Waves with Mitigated Open Stopband
topic Optics
Applied Physics
url https://arxiv.org/abs/2412.13338