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具有同时低红外发射率、宽带微波吸收和动态可见光伪装功能的多功能分层柔性超表面。

Multifunctional-hierarchical flexible metasurface with simultaneous low infrared emissivity, broadband microwave absorption, and dynamic visible camouflage.

作者信息

Yang Junyi, Zhao Jiancun, Li Xinting, Guo Yuhao, Wang Xiaodong, Qiu Ye, Li Ben, Wang Zhenyu, Li Wenli, Yu Yiting

出版信息

Opt Express. 2024 Oct 21;32(22):38477-38489. doi: 10.1364/OE.542395.

Abstract

Sophisticated multispectral detectors have made single-band camouflage materials ineffective, consequently leading to significant advancements in metasurfaces that possess both infrared (IR), radar, and visible stealth capabilities. However, the mutual constraints of stealth principles across different bands and the demand for environment-adaptive camouflage raise challenges to existing multispectral compatible stealth solutions. Here a multifunctional-hierarchical flexible metasurface (MHFM) including an infrared suppression layer (IRSL), three microwave absorbing layers (MAL), an environmental adaptation layer (EAL), and a total reflective sheet (TRS), was designed to simultaneously achieve IR, radar, and dynamic visible stealth. Unlike the direct stacking of functional layers in existing solutions, the EAL is directly integrated with the first MAL as a part of the absorbing structure. As a proof-of-concept, an MHFM sample with an area of 300 × 300 mm and a minimum linewidth of 20 µm is demonstrated. The excellent multispectral camouflage performance is verified in experiments, showing low infrared emissivity (0.229, covering the wavelength of 3∼14 µm), the high absorption efficiency of over 90% in 2.53∼34.56 GHz, and dynamic camouflage in both grassland and desert environments. Our work presents a new solution for adaptive visible camouflage and competitive IR-radar stealth that is prospectively applicable in complex environments.

摘要

先进的多光谱探测器已使单波段伪装材料失效,从而推动了具有红外(IR)、雷达和可见光隐身能力的超表面取得重大进展。然而,不同波段隐身原理的相互制约以及对环境自适应伪装的需求,给现有的多光谱兼容隐身解决方案带来了挑战。在此,设计了一种多功能分层柔性超表面(MHFM),它包括一个红外抑制层(IRSL)、三个微波吸收层(MAL)、一个环境适应层(EAL)和一个全反射片(TRS),以同时实现红外、雷达和动态可见光隐身。与现有解决方案中功能层的直接堆叠不同,EAL作为吸收结构的一部分直接与第一个MAL集成。作为概念验证,展示了一个面积为300×300毫米、最小线宽为20微米的MHFM样品。实验验证了其优异的多光谱伪装性能,显示出低红外发射率(0.229,覆盖3∼14微米波长)、在2.53∼34.56吉赫兹范围内超过90%的高吸收效率以及在草地和沙漠环境中的动态伪装。我们的工作为自适应可见光伪装和具有竞争力的红外-雷达隐身提出了一种新的解决方案,有望应用于复杂环境。

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