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      Low-cost laser cutting fabricated all-metallic metamaterial near-field focusing lens

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          Abstract

          In this work, a low-cost all-metal metamaterial near-field lens based on laser cutting technology is proposed. A novel spiral-slot structure is proposed to achieve miniaturized unit cells with an adjustable 360-degree phase shift at a length smaller than 0.2 times the operating wavelength. Since the unit is entirely constructed of stainless steel, it is resistant to high temperatures and high pressures compared to existing results. Moreover, a four-layer structure is used to increase the transmission coefficient. The final L-band near-field lens is constructed of 20 × 20 units. Simulation and measured results show that the half-power beamwidth of the focus is less than 211 mm from 1.52 GHz to 1.68 GHz at the focal spot observation plane of 500 mm from the lens. Since numerically controlled machine tools and three-dimensional printing are prohibitively expensive for machining large metal components, a low-cost all-metallic lens was manufactured using laser cutting technology. The measured results are in agreement with the simulation results.

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          Most cited references27

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          Near-Field Focusing With a Corrugated Surface

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            Role of metal 3D printing to increase quality and resource-efficiency in the construction sector

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              Focusing Properties of Fresnel Zone Plate Lens Antennas in the Near-Field Region

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                Author and article information

                Contributors
                Journal
                Heliyon
                Heliyon
                Heliyon
                Elsevier
                2405-8440
                08 March 2023
                March 2023
                08 March 2023
                : 9
                : 3
                : e14401
                Affiliations
                [a ]Department of Microwave Engineering, Harbin Institute of Technology, Harbin, China
                [b ]Zunshen Starlink Technology Co, Foshan, China
                [c ]Air Force Engineering University, Xi'an, China
                [d ]AVIC Lei hua Electronic Technology Institute, Wu Xi, China
                [e ]Emergency Department, Harbin First Hospital, Harbin, China
                Author notes
                []Corresponding author.
                [∗∗ ]Corresponding author.
                [∗∗∗ ]Corresponding author.
                Article
                S2405-8440(23)01608-0 e14401
                10.1016/j.heliyon.2023.e14401
                10023966
                36942220
                e2e9c081-4159-4817-8c93-9319f5e8dc00
                © 2023 The Authors. Published by Elsevier Ltd.

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 2 December 2022
                : 2 March 2023
                : 3 March 2023
                Categories
                Research Article

                metamaterial,laser cutting,near-field lens,all-metallic lens,square spiral groove structure

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