EDOARDO NEGRI

Dottore di ricerca

ciclo: XXXVII


relatore: prof. Alessandro Galli

Titolo della tesi: Analysis and Design of Advanced Radiating Devices based on Leaky Waves

In recent years, millimeter-wave and THz applications of electromagnetics, such as near-field focusing, medical and security imaging, wireless power and information transfer, just to mention but a few, have gained much attention in the area of information and communication technology (ICT) due to their potentially high impact on social and technological development. On the one hand, the need of highly directive radiating devices with wideband or tunable radiating features in the far-field region at millimeter-wave or THz frequencies has recently boosted the research activity in the design of flexible, cost-effective, and low-profile radiators. On the other hand, the `chimera' of point-to-point wireless communications is to transfer the largest amount of information at the farthest distance, possibly with the slightest waste of power and resilience to obstacles. These needs call for devices capable of radiating focused beams in the near-field region (to minimize diffraction and thus waste of power) with as larger as possible cover distance at high frequencies (to maximize the available bandwidth and thus the information content). In this context, leaky-wave theory is an elegant and effective formalism, which allows for describing in a common fashion guiding and radiating phenomena in both the near- and the far-field region at any frequency. For this reason, this PhD thesis deals with the rigorous investigation (in diverse cases supported by experiments) of innovative radiating systems under the leaky-wave perspective. The proposed devices are designed to outperform the state of the art as concerns the bandwidth and reconfigurable performance of THz devices operating in the far-field (i.e., antennas) and to further enhance the focusing behavior and depth of field of microwave, millimeter-, and submillimeter-wave devices operating in the near field (i.e., launchers). Specifically, an innovative leaky-wave approach has been proposed for the analysis and design of planar, low-cost, and easy-to-implement devices working in the millimeter-wave frequency range to strongly improve the figure of merit (FoM) given by the product of the antenna gain and fractional bandwidth. This FoM enhancement could play a fundamental role for the implementation of these devices in advanced terrestrial and satellite communication systems. Moreover, the use of a relatively new and promising material, such as graphene, has been considered for the design of THz leaky-wave antennas. In particular, since ohmic losses in graphene notably hinder the efficiency of graphene-based THz devices, an innovative antenna based on hybrid metal–graphene metasurface has been proposed to mitigate this issue, achieving very interesting results in terms of reconfigurability, efficiency, and radiating capabilities. In addition to the intriguing capabilities offered by leaky waves in far-field applications, interesting focusing properties have been observed in the near-field region. In particular, it is shown that leaky waves can profitably be used to generate limited-diffraction field distributions by means of planar, single-feeder, and cost-effective radiators at millimeter-wave frequencies. The latter, commonly referred to as Bessel-beam launchers, can be implemented with either a compact or an electrically large structure thus featuring either a narrow or a wideband behavior, respectively. These devices are able to generate Bessel beams, which possess: i) a nondiffractive character, i.e., the capability to maintain constant their transverse section for several wavelengths from the radiating aperture; ii) a high resolution, namely a transverse spot size having linear dimensions on a wavelength scale; iii) a self-healing character, i.e., the capability to reconstruct themselves if an obstacle is put along the line-of-sight. These intriguing properties are usually preserved up to a finite distance, which is called nondiffractive range. By exploiting leaky-wave theory, the possibility to extend the nondiffractive range up to 50 times the radiator diameter has been demonstrated (typical values of the nondiffractive range at microwave and millimeter-wave frequencies usually do not exceed three or four time the radiating-aperture diameter), further increasing the potential of these radiating devices from a practical viewpoint. Still, in the context of Bessel-beam launchers, this PhD thesis also investigates, designs, and experimentally validates original and promising focusing systems working from microwave to THz frequencies. The performance of these devices is also predicted and experimentally validated in a wireless-power-transfer scenario by generating radiative near-field links with higher performance with respect to typical inductive and far-field links in terms of working distance and efficiency, respectively. As concerns the THz frequency range, this PhD thesis analyzes, design, and experimentally validates original THz detectors based on different kinds of photoconductive antennas and transistors. The obtained promising results pave the way for the implementation of future, fast, and accurate medical and security imaging systems.

Produzione scientifica

11573/1724357 - 2024 - TE-polarized bessel-beam launchers for wireless power transfer at millimeter waves: theory, design, and experimental validation
Benassi, Francesca; Negri, Edoardo; Fuscaldo, Walter; Paolini, Giacomo; Maita, Francesco; Burghignoli, Paolo; Masotti, Diego; Galli, Alessandro; Costanzo, Alessandra - 01a Articolo in rivista
rivista: IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES (IEEE / Institute of Electrical and Electronics Engineers Incorporated:445 Hoes Lane:Piscataway, NJ 08854:(800)701-4333, (732)981-0060, EMAIL: subscription-service@ieee.org, INTERNET: http://www.ieee.org, Fax: (732)981-9667) pp. 1-12 - issn: 0018-9480 - wos: WOS:001329036700001 (0) - scopus: 2-s2.0-85205831044 (2)

11573/1720532 - 2024 - The leaky-wave perspective for array-fed Fabry–Perot cavity and bull’s-eye antennas
Madji, M.; Negri, E.; Fuscaldo, W.; Comite, D.; Galli, A.; Burghignoli, P. - 01a Articolo in rivista
rivista: APPLIED SCIENCES (Basel: MDPI AG, 2011-) pp. - - issn: 2076-3417 - wos: WOS:001287867800001 (1) - scopus: 2-s2.0-85200911600 (1)

11573/1720548 - 2024 - An array-fed Fabry–Perot cavity antenna based on linear-to-circular polarization converting metasurface for 2-D beam scanning
Madji, M.; Negri, E.; Fuscaldo, W.; Comite, D.; Galli, A.; Burghignoli, P. - 04b Atto di convegno in volume
congresso: 2024 IEEE INC-USNC-URSI Radio Science Meeting (Joint with AP-S Symposium), INC-USNC-URSI 2024 (Florence; Italy)
libro: 2024 IEEE INC-USNC-URSI Radio Science Meeting (Joint with AP-S Symposium), INC-USNC-URSI 2024 - Proceedings - (9789463968119)

11573/1720547 - 2024 - Fabry–Perot cavity antennas based on thick partially reflecting sheets: innovative design criteria
Negri, E.; Ballarini, E.; Fuscaldo, W.; Burghignoli, P.; Galli, A. - 04b Atto di convegno in volume
congresso: 2024 IEEE INC-USNC-URSI Radio Science Meeting (Joint with AP-S Symposium), INC-USNC-URSI 2024 (Florence; Italy)
libro: 2024 IEEE INC-USNC-URSI Radio Science Meeting (Joint with AP-S Symposium), INC-USNC-URSI 2024 - Proceedings - (9789463968119)

11573/1713646 - 2024 - Design of TE-polarized resonant Bessel-beam launchers for wireless power transfer links in the radiative near-field region
Negri, E.; Benassi, F.; Fuscaldo, W.; Masotti, D.; Burghignoli, P.; Costanzo, A.; Galli, A. - 01a Articolo in rivista
rivista: INTERNATIONAL JOURNAL OF MICROWAVE AND WIRELESS TECHNOLOGIES (UK: Cambridge University Press) pp. 1-10 - issn: 1759-0787 - wos: WOS:001227484500001 (0) - scopus: 2-s2.0-85193923883 (0)

11573/1720534 - 2024 - Reconfigurable THz leaky-wave antennas based on innovative metal-graphene metasurfaces
Negri, E.; Fuscaldo, W.; Burghignoli, P.; Galli, A. - 01a Articolo in rivista
rivista: JOURNAL OF PHYSICS D. APPLIED PHYSICS (IOP Publishing Limited:Dirac House, Temple Back, Bristol BS1 6BE United Kingdom:011 44 117 9297481, EMAIL: custserv@iop.org, INTERNET: http://www.iop.org, Fax: 011 44 117 9294318) pp. - - issn: 0022-3727 - wos: WOS:001306043900001 (1) - scopus: 2-s2.0-85203279332 (1)

11573/1724359 - 2024 - TE-polarized leaky-wave beam launchers: generation of Bessel and Bessel–Gauss beams
Negri, E.; Fuscaldo, W.; González-Ovejero, D.; Burghignoli, P.; Galli, A. - 01a Articolo in rivista
rivista: APPLIED PHYSICS LETTERS (New York: American Institute of Physics) pp. - - issn: 0003-6951 - wos: WOS:001345538700004 (1) - scopus: (0)

11573/1713647 - 2024 - Leaky-Wave Design of Hybrid-, TE-, and TM-Polarized Resonant Bessel-Beam Launchers for Millimeter- and Submillimeter-Wave Applications
Negri, Edoardo; Fuscaldo, Walter; Burghignoli, Paolo; Galli, Alessandro - 04b Atto di convegno in volume
congresso: 18th European Conference on Antennas and Propagation (EuCAP) (Glasgow, Scozia)
libro: Proceedings of the 18th European Conference on Antennas and Propagation (EuCAP), 2024 - ()

11573/1713644 - 2024 - An efficient and accurate semi-analytical matching technique for waveguide-fed antennas
Negri, Edoardo; Fuscaldo, Walter; Tofani, Silvia; Burghignoli, Paolo; Galli, Alessandro - 01a Articolo in rivista
rivista: SCIENTIFIC REPORTS (London: Springer Nature London: Nature Publishing Group) pp. - - issn: 2045-2322 - wos: WOS:001163729100037 (5) - scopus: 2-s2.0-85185256046 (6)

11573/1713649 - 2024 - Hybrid Metal–Graphene Unit Cells for THz Reconfigurable Leaky-Wave Antennas
Negri, Edoardo; Fuscaldo, Walter; Toni, Marco; Burghignoli, Paolo; Galli, Alessandro - 04b Atto di convegno in volume
congresso: 18th European Conference on Antennas and Propagation (EuCAP) (Glasgow, Scozia)
libro: Proceedings of the 18th European Conference on Antennas and Propagation (EuCAP), 2024 - ()

11573/1713659 - 2023 - Advanced Radiating Systems Based on Array-Fed 2-D Leaky-Wave Antennas for Sensing and Communication Applications
Madji, Mikhail; Negri, Edoardo; Fuscaldo, Walter; Comite, Davide; Burghignoli, Paolo; Galli, Alessandro - 04b Atto di convegno in volume
congresso: IEEE International Workshop on Technologies for Defense and Security (TechDefense) 2023 (Roma, Italia)
libro: Proceedings of the IEEE International Workshop on Technologies for Defense and Security (TechDefense), 2023 - ()

11573/1713663 - 2023 - Leaky-Wave Synthesis of Bessel Beams at Millimeter-Wave Frequencies
Negri, E.; Fuscaldo, W.; Burghignoli, P.; Galli, A. - 04b Atto di convegno in volume
congresso: IEEE Conference on Antenna Measurements and Applications (CAMA) 2023 (Genova, Italia)
libro: Proceedings of the IEEE Conference on Antenna Measurements and Applications (CAMA), 2023 - ()

11573/1682688 - 2023 - Recent Advances in Beam Focusing through Resonant Bessel-Beam Launchers for Millimeter-Wave WPT Applications
Negri, Edoardo; Benassi, Francesca; Fuscaldo, Walter; Masotti, Diego; Burghignoli, Paolo; Costanzo, Alessandra; Galli, Alessandro - 04b Atto di convegno in volume
congresso: 17th European Conference on Antennas and Propagation, EuCAP 2023 (Florence; Italy)
libro: European Conference on Antennas and Propagation (EuCAP) 2023 - ()

11573/1692489 - 2023 - Wireless radiative near-field links through wideband Bessel-beam launchers
Negri, Edoardo; Del Biondo, Luca; Fusclado, Walter; Burghignoli, Paolo; Galli, Alessandro - 04b Atto di convegno in volume
congresso: 53rd European Microwave Conference, EuMC 2023 (Berlin; Germany)
libro: Proceedings of the 53rd European Microwave Conference, EuMC 2023 - ()

11573/1669471 - 2023 - Leaky-Wave Analysis of TM-, TE-, and Hybrid-Polarized Aperture-Fed Bessel-Beam Launchers for Wireless-Power-Transfer Links
Negri, Edoardo; Fuscaldo, Walter; Burghignoli, Paolo; Galli, Alessandro - 01a Articolo in rivista
rivista: IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION ([New York: Institute of Electrical and Electronics Engineers]) pp. 1424-1436 - issn: 0018-926X - wos: WOS:000967206900001 (10) - scopus: 2-s2.0-85146258296 (17)

11573/1713650 - 2023 - Innovative Application Contexts for Focusing Devices based on Leaky Waves
Negri, Edoardo; Fuscaldo, Walter; Burghignoli, Paolo; Galli, Alessandro - 04b Atto di convegno in volume
congresso: IEEE International Workshop on Technologies for Defense and Security (TechDefense) 2023 (Roma, Italia)
libro: Proceedings of the IEEE International Workshop on Technologies for Defense and Security (TechDefense), 2023 - ()

11573/1641109 - 2022 - Comparison between Hybrid-and TM-polarized Bessel-Beam launchers for wireless power transfer in the radiative near-field at millimeter waves
Benassi, Francesca; Fuscaldo, Walter; Negri, Edoardo; Paolini, Giacomo; Augello, Elisa; Masotti, Diego; Burghignoli, Paolo; Galli, Alessandro; Costanzo, Alessandra - 04b Atto di convegno in volume
congresso: 51st European Microwave Conference, EuMC 2021 (London; United Kingdom)
libro: Proceedings of the 51st European Microwave Conference, EuMC 2021 - (978-2-87487-063-7)

11573/1669475 - 2022 - A Leaky-Wave Analysis of Resonant Bessel-Beam Launchers: Design Criteria, Practical Examples, and Potential Applicationsat Microwave and Millimeter-Wave Frequencies
Negri, E.; Fuscaldo, W.; Burghignoli, P.; Galli, A. - 01a Articolo in rivista
rivista: MICROMACHINES (Basel : Molecular Diversity Preservation Internationa) pp. 1-15 - issn: 2072-666X - wos: WOS:000904233100001 (8) - scopus: 2-s2.0-85144612084 (12)

11573/1669585 - 2022 - Effective TE-polarized Bessel-beam excitation for wireless power transfer near-field links
Negri, Edoardo; Benassi, Francesca; Fuscaldo, Walter; Masotti, Diego; Burghignoli, Paolo; Costanzo, Alessandra; Galli, Alessandro - 04b Atto di convegno in volume
congresso: 52st European Microwave Conference, EuMC 2022 (Milan; Italy)
libro: Proceedings of the 52nd European Microwave Conference, EuMC 2022 - (978-2-8748-7069-9)

11573/1640912 - 2022 - Analysis of Resonant Bessel-Beam Launchers based on Isotropic Metasurfaces
Negri, Edoardo; Fuscaldo, Walter; Ettorre, Mauro; Burghignoli, Paolo; Galli, Alessandro - 04b Atto di convegno in volume
congresso: 16th European Conference on Antennas and Propagation, EuCAP 2022 (Madrid; Spain)
libro: Proceedings of the 16th European Conference on Antennas and Propagation, EuCAP 2022 - ()

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