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用于红外隐身技术的选择性双频超材料完美吸收体。

Selective dual-band metamaterial perfect absorber for infrared stealth technology.

机构信息

Nano Photonics Laboratory, School of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodeamun-gu, Seoul, 03722, Republic of Korea.

出版信息

Sci Rep. 2017 Jul 27;7(1):6740. doi: 10.1038/s41598-017-06749-0.

Abstract

We propose a dual-band metamaterial perfect absorber with a metal-insulator-metal structure (MIM) for use in infrared (IR) stealth technology. We designed the MIM structure to have surface plasmon polariton (SPP) and magnetic polariton (MP) resonance peaks at 1.54 μm and 6.2 μm, respectively. One peak suppresses the scattering signals used by laser-guided missiles, and the other matches the atmospheric absorption band, thereby enabling the suppression of long-wavelength IR (LWIR) and mid-wavelength IR (MWIR) signals from objects as they propagate through the air. We analysed the spectral properties of the resonance peaks by comparing the wavelength of the MP peak calculated using the finite-difference time-domain method with that obtained by utilizing an inductor-capacitor circuit model. We evaluated the dependence of the performance of the dual-band metamaterial perfect absorber on the incident angle of light at the surface. The proposed absorber was able to reduce the scattering of 1.54 μm IR laser light by more than 90% and suppress the MWIR and LWIR signatures by more than 92%, as well as maintain MWIR and LWIR signal reduction rates greater than 90% across a wide temperature range from room temperature to 500 °C.

摘要

我们提出了一种具有金属-绝缘体-金属(MIM)结构的双频超材料完美吸收体,用于红外(IR)隐身技术。我们设计的 MIM 结构在 1.54μm 和 6.2μm 处分别具有表面等离子体激元(SPP)和磁等离子体激元(MP)共振峰。一个峰抑制了激光制导导弹使用的散射信号,另一个峰与大气吸收带匹配,从而能够抑制物体在空气中传播时的长波红外(LWIR)和中波红外(MWIR)信号。我们通过比较使用有限差分时域法计算的 MP 峰的波长与利用电感-电容电路模型获得的波长,分析了共振峰的光谱特性。我们评估了光在表面的入射角对双频超材料完美吸收体性能的影响。所提出的吸收体能够将 1.54μm 的 IR 激光散射降低超过 90%,并抑制 MWIR 和 LWIR 特征信号超过 92%,同时在从室温到 500°C 的宽温度范围内保持 MWIR 和 LWIR 信号降低率大于 90%。

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