Research on multi-resonance mechanism to achieve ultra-wideband high absorption of a metamaterial absorber in the UV to MIR range

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Chinese Journal of Physics Pub Date : 2024-08-11 DOI:10.1016/j.cjph.2024.08.012
Yanli Qu , Yan Chen , Shanjun Chen , Qingfeng Wu , Jin Liu , Zao Yi , Liping Fu
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Abstract

Wideband metamaterial perfect absorbers have been extensively researched due to their excellent properties. A four-layer ultra-broadband metamaterial perfect absorber engraved with a square cavity is proposed. A clever combination of grating and square cavity allows the absorber to manifests an overall absorption of over 92 % and an average absorption rate of 97.27 % within the operational band from 280 to 5400 nm. Through analysis, it can be concluded that the coupling effects of Rayleigh anomaly (RA), magnetic resonance (MR), cavity resonance (CR), propagating surface plasmon resonance (PSPR) and local surface plasmon resonance (LSPR) result in perfect absorption. The absorber is insensitive to polarization and large angle incidence. It is worth mentioning that the average absorption rate of our structure reaches 93.32 % at a large incidence angle of 60° in TE mode, which is much higher than that of other absorbers. At 1000 K, the total photothermal conversion efficiency of our absorber is still above 90 %. The designed structure has the following advantages: high absorption, ultra-wide bandwidth, high tolerance to fabrication errors and insensitivity to large angle incidence. Thus, the absorber can be used in the solar energy harvesting and perfect stealth. Additionally, it also can be served as a reference in thermophotovoltaics, thermal imaging and infrared detection.

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研究超材料吸收器在紫外至中红外范围内实现超宽带高吸收的多共振机制
宽带超材料完美吸波材料因其优异的性能而被广泛研究。本文提出了一种刻有方形空腔的四层超宽带超材料完美吸波材料。光栅和方形空腔的巧妙结合使吸收器在 280 至 5400 nm 工作波段内的整体吸收率超过 92%,平均吸收率达到 97.27%。通过分析可以得出结论:瑞利反常(RA)、磁共振(MR)、空腔共振(CR)、传播表面等离子体共振(PSPR)和局部表面等离子体共振(LSPR)的耦合效应导致了完美的吸收。吸收器对偏振和大角度入射不敏感。值得一提的是,在 TE 模式下,我们的结构在 60° 大入射角时的平均吸收率达到 93.32%,远高于其他吸收体。在 1000 K 时,我们的吸收器的总光热转换效率仍高于 90%。所设计的结构具有以下优点:高吸收率、超宽带宽、对制造误差的容忍度高以及对大入射角不敏感。因此,该吸收器可用于太阳能收集和完美隐形。此外,它还可作为热光电、热成像和红外探测的参考。
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来源期刊
Chinese Journal of Physics
Chinese Journal of Physics 物理-物理:综合
CiteScore
8.50
自引率
10.00%
发文量
361
审稿时长
44 days
期刊介绍: The Chinese Journal of Physics publishes important advances in various branches in physics, including statistical and biophysical physics, condensed matter physics, atomic/molecular physics, optics, particle physics and nuclear physics. The editors welcome manuscripts on: -General Physics: Statistical and Quantum Mechanics, etc.- Gravitation and Astrophysics- Elementary Particles and Fields- Nuclear Physics- Atomic, Molecular, and Optical Physics- Quantum Information and Quantum Computation- Fluid Dynamics, Nonlinear Dynamics, Chaos, and Complex Networks- Plasma and Beam Physics- Condensed Matter: Structure, etc.- Condensed Matter: Electronic Properties, etc.- Polymer, Soft Matter, Biological, and Interdisciplinary Physics. CJP publishes regular research papers, feature articles and review papers.
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