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Polarization-maintaining reflection-mode THz time-domain spectroscopy of a polyimide based ultra-thin narrow-band metamaterial absorber

机译:聚酰亚胺基超薄窄带超材料吸收体的保偏反射模式太赫兹时域光谱

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摘要

This paper reports the design, the microfabrication and the experimental characterization of an ultra-thin narrow-band metamaterial absorber at terahertz frequencies. The metamaterial device is composed of a highly flexible polyimide spacer included between a top electric ring resonator with a four-fold rotational symmetry and a bottom ground plane that avoids misalignment problems. Its performance has been experimentally demonstrated by a custom polarization-maintaining reflection-mode terahertz time-domain spectroscopy system properly designed in order to reach a collimated configuration of the terahertz beam. The dependence of the spectral characteristics of this metamaterial absorber has been evaluated on the azimuthal angle under oblique incidence. The obtained absorbance levels are comprised between 67% and 74% at 1.092 THz and the polarization insensitivity has been verified in transverse electric polarization. This offers potential prospects in terahertz imaging, in terahertz stealth technology, in substance identification, and in non-planar applications. The proposed compact experimental set-up can be applied to investigate arbitrary polarization-sensitive terahertz devices under oblique incidence, allowing for a wide reproducibility of the measurements.
机译:本文报道了太赫兹频率下超薄窄带超材料吸收体的设计,微细加工和实验特性。该超材料装置由高度柔性的聚酰亚胺间隔物组成,该间隔物包括在具有四重旋转对称性的顶部环形电子谐振器和避免未对准问题的底部接地平面之间。它的性能已通过适当设计的定制偏振保持反射模式太赫兹时域光谱系统进行了实验证明,以达到准直的太赫兹光束配置。在斜入射下,已经评估了这种超材料吸收体的光谱特性对方位角的依赖性。在1.092 THz处获得的吸光度水平介于67%和74%之间,并且在横向极化中已验证了极化不敏感性。这为太赫兹成像,太赫兹隐身技术,物质识别和非平面应用提供了潜在的前景。所提出的紧凑型实验装置可用于研究斜入射下的任意偏振敏感太赫兹器件,从而实现了测量的广泛再现性。

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