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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Compact Broadband Terahertz Perfect Absorber Based on Multi-Interference and Diffraction Effects
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Compact Broadband Terahertz Perfect Absorber Based on Multi-Interference and Diffraction Effects

机译:基于多重干扰和衍射效应的紧凑型宽带太赫兹完美吸收体

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摘要

High absorption over a wide frequency band has attracted considerable interest due to its potential applications in imaging and anti-radar cloaking devices. In order to make these devices more integrated, the thickness of the absorber is crucial. In this paper, a compact, polarization-independent, broadband, omnidirectional terahertz (THz) absorber is proposed, fabricated, and evaluated. This THz absorber is based on the combined effect of the multi-interference and diffraction. It is experimentally demonstrated that over 95% absorption can be obtained in the frequency range from 0.75 to 2.41 THz. This well-designed thinner absorber not only reduces the device thickness to 120 m, but also introduces more interference peaks so that the absorption spectrum is significantly enlarged. Five successive absorption peaks at 0.88, 1.20, 1.53, 1.96, and 2.23 THz are combined into a broadband THz absorption spectrum.
机译:由于其在成像和反雷达隐身设备中的潜在应用,因此在宽频带上的高吸收倍受关注。为了使这些设备更集成,吸收器的厚度至关重要。本文提出,制造和评估了一种紧凑的,偏振无关的宽带全向太赫兹(THz)吸收器。该太赫兹吸收器基于多重干涉和衍射的综合作用。实验证明,在0.75至2.41 THz的频率范围内可以获得超过95%的吸收。这种设计合理的更薄的吸收器不仅将设备厚度减小到120 m,而且还引入了更多的干扰峰,因此吸收光谱显着扩大。在0.88、1.20、1.53、1.96和2.23 THz处的五个连续吸收峰合并为宽带THz吸收光谱。

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