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通过使用梯形结构实现的无外部电阻元件的宽入射角、偏振无关宽带吸收超结构。

Wide-incident-angle, polarization-independent broadband-absorption metastructure without external resistive elements by using a trapezoidal structure.

作者信息

Pham Thanh Son, Zheng Haiyu, Chen Liangyao, Khuyen Bui Xuan, Lee YoungPak

机构信息

Department of Physics and Quantum Photonic Science Research Center, Hanyang University, Seoul, 04763, Korea.

Alpha ADT, No.1202, 51-9, Dongtan Advanced Industrial, Hwaseong, 18469, Korea.

出版信息

Sci Rep. 2024 May 3;14(1):10198. doi: 10.1038/s41598-024-60171-x.

Abstract

The absorption of electromagnetic waves in a broadband frequency range with polarization insensitivity and incidence-angle independence is greatly needed in modern technology applications. Many structures based on metamaterials have been suggested for addressing these requirements; these structures were complex multilayer structures or used special materials or external electric components, such as resistive ones. In this paper, we present a metasurface structure that was fabricated simply by employing the standard printed-circuit-board technique but provides a high absorption above 90% in a broadband frequency range from 12.35 to 14.65 GHz. The metasurface consisted of structural unit cells of 4 symmetric substructures assembled with a metallic bar pattern, which induced broadband absorption by using a planar resistive interaction in the pattern without a real resistive component. The analysis, simulation, and measurement results showed that the metasurface was also polarization insensitive and still maintained an absorption above 90% at incident angles up to 45°. The suggested metasurface plays a role in the fundamental design and can also be used to design absorbers at different frequency ranges. Furthermore, further enhancement of the absorption performance is achieved by improved design and fabrication.

摘要

现代技术应用中迫切需要在宽带频率范围内实现对电磁波的吸收,且该吸收具有偏振不敏感性和入射角独立性。为满足这些要求,人们提出了许多基于超材料的结构;这些结构或是复杂的多层结构,或是使用了特殊材料或外部电子元件,如电阻元件。在本文中,我们展示了一种超表面结构,它通过采用标准印刷电路板技术简单制造而成,但在12.35至14.65GHz的宽带频率范围内提供高于90%的高吸收率。该超表面由4个对称子结构的结构单元组成,这些子结构与金属条图案组装在一起,通过图案中的平面电阻相互作用(无需实际电阻元件)实现宽带吸收。分析、模拟和测量结果表明,该超表面对偏振也不敏感,并且在入射角高达45°时仍保持高于90%的吸收率。所提出的超表面在基础设计中发挥作用,也可用于设计不同频率范围的吸收器。此外,通过改进设计和制造可进一步提高吸收性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88b3/11068773/f6ce09aeb17f/41598_2024_60171_Fig1_HTML.jpg

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