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Terahertz ultrathin film thickness sensor below lambda/90 based on metamaterial

机译:基于超材料的lambda / 90以下的太赫兹超薄膜厚度传感器

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摘要

The film thickness sensing based on metamaterial is investigated in the terahertz (THz) region. We fabricated the metamaterial sensor, and demonstrated its resonance by using the THz time-domain spectroscopy system. The results show that the resonant dip redshifts as the film thickness increases, which achieves reliable film sensing in the THz band. Its sensitivity is larger than 9.4 GHz/mu m with a film thinner than lambda/90. Meanwhile, the sensing mechanism is revealed by the simulation of near-field resonance distribution, which shows that the resonant intensity is stronger when the field is closer to the interface between the metamaterial surface and polyvinyl alcohol film. Therefore, the nonlinear type of the sensing sensitivity in our experiment can be well explained, and a higher sensitive sensing can be obtained when the film thickness is smaller. This simple and flexible method can realize the ultrathin film sensing in the THz region, and has application potential in the real-time monitoring of sample quality. (C) 2016 Optical Society of America.
机译:在太赫兹(THz)区域研究了基于超材料的薄膜厚度感测。我们制造了超材料传感器,并通过使用THz时域光谱系统演示了其共振。结果表明,随着膜厚度的增加,共振倾角会发生红移,从而在THz波段实现可靠的膜感应。它的灵敏度大于9.4 GHz /μm,薄膜厚度小于lambda / 90。同时,通过近场共振分布的仿真揭示了其感应机理,表明当电场越靠近超材料表面与聚乙烯醇膜之间的界面时,共振强度越强。因此,在我们的实验中可以很好地解释感测灵敏度的非线性类型,并且当膜厚度较小时可以获得更高的感测灵敏度。这种简单灵活的方法可以实现太赫兹区域的超薄膜感测,在样品质量的实时监测中具有应用潜力。 (C)2016年美国眼镜学会。

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