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NSGA-II-driven design of a multispectral compatible metasurface with broadband microwave polarization conversion and low infrared emissivity
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作者 WEISHENG ZHANG MINGBAO YAN +5 位作者 RUICHAO ZHU SAI SUI YAJUAN HAN WEIQIANG GONG JIECHU LIU JIAFU WANG 《Photonics Research》 2025年第12期3422-3430,共9页
Given the conflict between high microwave absorption and low infrared emissivity performance in electromagnetic-controlled metasurface design,achieving multispectral compatibility between low microwave reflectivity an... Given the conflict between high microwave absorption and low infrared emissivity performance in electromagnetic-controlled metasurface design,achieving multispectral compatibility between low microwave reflectivity and low infrared emissivity remains challenging.Leveraging the non-dominated sorting genetic algorithm II(NSGA-II),this study presents a three-layer lightweight metasurface comprising a metal-patterned F4B substrate with a metal backplate,designed to achieve simultaneous ultra-wideband polarization conversion and low infrared emissivity. 展开更多
关键词 multispectral compatible multispectral compatibility metasurface broadband microwave polarization conversion low infrared emissivity nsga ii metal backplatedesigned
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Non-volatile tunable multispectral compatible infrared camouflage based on the infrared radiation characteristics of Rosaceae plants
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作者 Xin Li Xinye Liao +9 位作者 Junxiang Zeng Zao Yi Xin He Jiagui Wu Huan Chen Zhaojian Zhang Yang Yu Zhengfu Zhang Sha Huang Junbo Yang 《Opto-Electronic Advances》 2025年第8期68-83,共16页
Most multispectral compatible infrared camouflage devices primarily focus on achieving low emissivity but neglect environmental emissivity matching when environmental emissivity exceeds that of the devices,this create... Most multispectral compatible infrared camouflage devices primarily focus on achieving low emissivity but neglect environmental emissivity matching when environmental emissivity exceeds that of the devices,this creates a"low-emissivity exposure"risk.To address this issue,we develop a tunable multispectral compatible infrared camouflage device using phase change material In3SbTe2(IST).Simulation and experimental results demonstrate that in both the amorphous(aIST)and crystalline(cIST)states,the device achieves simulated plant infrared camouflage and ultra-low emissivity infrared camouflage within the atmospheric window bands(3–5μm and 8–14μm).To address thermal management,it utilizes two non-atmospheric window bands(2.5–3μm and 5–8μm)for heat dissipation.Additionally,laser stealth is realized at three specific wavelengths(1.064μm,1.55μm,and 10.6μm).In the visible spectrum,high absorptivity enables effective visible light camouflage.Adjusting the geometric parameters of top layer structure enables color variation.This work not only highlights potential applications in reversible switching,reconfigurable imaging,and dynamic coding using IST but also offers an effective strategy to counter multispectral detection technology. 展开更多
关键词 multispectral compatible infrared camouflage phase change laser stealth heat management color variation
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