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具有可调发射率的多波长伪装超材料。

Multiwavelength camouflage metamaterials with adjustable emissivity.

作者信息

Gao Huixuan, Liang Yuzhang, Huang Yuhang, Huang Hui, Li Rui, Peng Wei

出版信息

Opt Express. 2023 Oct 23;31(22):36770-36780. doi: 10.1364/OE.497472.

Abstract

Metamaterials-based multispectral camouflage has attracted growing interest in most fields of military and aerospace due to its unprecedented emission adjustability covering an ultra-broadband spectral range. Conventional camouflage mainly concentrates on an individual spectral range, e. g. either of visible, mid-wavelength-infrared (MWIR) or long-wavelength-infrared (LWIR), which is especially incapable of self-adaptive thermal camouflage to the changing ambient environment. Here, we theoretically demonstrate a multispectral camouflage metamaterial consisting of a four-layer titanium/silicon/vanadium dioxide/ titanium (Ti/Si/VO/Ti) nanostructure, where the background temperature-adaptive thermal camouflage is implemented by exploiting the switchable metal/dielectric state of the phase-changing material VO for regulating the infrared emissivity of the designed metamaterial, whilst visible color camouflage is also achieved by tuning thickness of middle Si layer to match the background's appearance. It has been shown that the designed metamaterial with the dielectric state of VO enables thermal camouflage of high background temperature by increasing the thermal emission (average emissivity of 0.69/0.83 for MWIR/LWIR range), meanwhile, the metamaterial of the metallic state of VO for low background temperature thermal camouflage stemming from low emission (average emissivity of 0.29 for both MWIR/LWIR range) due to high infrared reflection. Furthermore, the designed metamaterial structural color is robust for a phase change switching. This proposed adaptive camouflage provides a potential strategy to broaden dynamical camouflage technology for further practical application in the fields of military and civilian.

摘要

基于超材料的多光谱伪装因其在超宽带光谱范围内前所未有的发射可调性,在军事和航空航天的大多数领域引起了越来越多的关注。传统伪装主要集中在单个光谱范围,例如可见光、中波长红外(MWIR)或长波长红外(LWIR)中的某一个,尤其无法对不断变化的环境进行自适应热伪装。在此,我们从理论上证明了一种由四层钛/硅/二氧化钒/钛(Ti/Si/VO/Ti)纳米结构组成的多光谱伪装超材料,其中通过利用相变材料VO的可切换金属/介电状态来调节所设计超材料的红外发射率,实现背景温度自适应热伪装,同时通过调整中间Si层的厚度以匹配背景外观来实现可见光颜色伪装。结果表明,具有VO介电状态的所设计超材料通过增加热发射实现了高背景温度下的热伪装(MWIR/LWIR范围内平均发射率为0.69/0.83),同时,由于高红外反射导致低发射(MWIR/LWIR范围内平均发射率均为0.29),具有VO金属状态的超材料实现了低背景温度下的热伪装。此外,所设计超材料的结构颜色对于相变切换具有鲁棒性。这种提出的自适应伪装为拓宽动态伪装技术提供了一种潜在策略,以便在军事和民用领域进一步实际应用。

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