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THz Thin Film Sensing with Labyrinth Metasurface Absorber

机译:迷宫式超表面吸收器的太赫兹薄膜感测

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In this work, a labyrinth metasurface sensor operating in the Terahertz (THz) band is presented. The strong electric field confinement leads to an excellent performance of this structure as thin film sensor. The sensing capability of the designed structure is numerically and experimentally measured. As the analyte (i.e. the substance sensed) thickness is increased, a frequency shift of the fundamental resonance is observed. Two different designs are studied both of them with excellent performance. An experimental average Figure of Merit (FOM) of 5093 (mm.RIU)-1 and 3111 (mm.RIU)-1 is obtained for both designs, improving the results found in the literature for structures fabricated with the same manufacturing techniques. Next, a numerical study of the behavior of the metasurface depending on the polarization characteristics is presented. The polarization angle of the incident E-field is varied between 0° and 90° showing a stable response in terms of the reflection coefficient. This aspect presents great advantages for thin film sensing, and could be extended to biological sensing in the future.
机译:在这项工作中,提出了在太赫兹(THz)波段工作的迷宫超表面传感器。强电场限制导致该结构作为薄膜传感器的出色性能。设计的结构的感测能力是通过数值和实验来测量的。随着分析物(即,所感测的物质)的厚度增加,观察到基本共振的频率偏移。研究了两种不同的设计,它们都具有出色的性能。实验平均品质因数(FOM)为5093(mm.RIU) -1 和3111(毫米.RIU) -1 两种设计均获得了λ,从而改善了文献中使用相同制造技术制造的结构的结果。接下来,给出了根据极化特性对超表面行为的数值研究。入射电场的偏振角在0°和90°之间变化,从而在反射系数方面显示出稳定的响应。这方面为薄膜感测提供了很大的优势,并且将来可以扩展到生物感测。

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