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基于超材料吸收体的高性能宽带电磁干扰屏蔽光学窗口

High-performance broadband electromagnetic interference shielding optical window based on a metamaterial absorber.

作者信息

Zhang Yaqiang, Dong Hongxing, Mou Nanli, Chen Lulu, Li Rihong, Zhang Long

出版信息

Opt Express. 2020 Aug 31;28(18):26836-26849. doi: 10.1364/OE.401766.

Abstract

An excellently transparent metamaterial-based electromagnetic interference (EMI) shielding window with broadband absorption is presented theoretically and demonstrated experimentally. The window is composed of double split circular ring (SCR) elements whose absorption spectra feature two mild resonant peaks. Indium-tin-oxide (ITO) with resonant patterns is utilized as the material to induce high ohmic loss and broaden the absorption bandwidth. The window achieves strong absorptivity, > 90%, covering an ultrawide frequency range of 7.8-18.0 GHz. Moreover, the measured shielding effectiveness (SE) of the window is > 18.25 dB, at 7.0-18.0 GHz, while the average optical transmittance is fixed at ∼73.10% in the visible-near-infrared (Vis-NIR) region of 400-1,500 nm. Further, the absorption mechanism is revealed by designing an equivalent circuit model and studying the distributions of the electric field and surface currents of the structure. Furthermore, a specific design feature also makes our device insensitive to the incident angle and the polarization state of the impinging microwave. The 90% absorption and shielding performance of the proposed optical window avail it for a wide range of great potential applications, such as the displays of military and medical precision devices.

摘要

本文从理论上提出并通过实验展示了一种基于超材料的具有宽带吸收特性的高透明度电磁干扰(EMI)屏蔽窗。该窗口由双裂环(SCR)元件组成,其吸收光谱具有两个温和的共振峰。具有共振图案的氧化铟锡(ITO)被用作材料以诱导高欧姆损耗并拓宽吸收带宽。该窗口在7.8 - 18.0 GHz的超宽频率范围内实现了大于90%的强吸收率。此外,该窗口在7.0 - 18.0 GHz的测量屏蔽效能(SE)大于18.25 dB,而在400 - 1500 nm的可见 - 近红外(Vis - NIR)区域平均光学透过率固定在约73.10%。此外,通过设计等效电路模型并研究结构的电场和表面电流分布揭示了吸收机制。此外,特定的设计特征还使我们的器件对入射微波的入射角和极化状态不敏感。所提出的光学窗口的90%吸收和屏蔽性能使其在军事和医疗精密设备显示器等广泛的潜在应用中具有广阔前景。

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