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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >High-sensitive dual-band sensor based on microsize circular ring complementary terahertz metamaterial
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High-sensitive dual-band sensor based on microsize circular ring complementary terahertz metamaterial

机译:基于微化圆环环的高灵敏度双频传感器互补太赫兹超材料

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摘要

Recently, resonance sensing based on the terahertz metamaterials has attracted considerable attentions due to the enhancement and confinement of local fields in microsize gap of resonant structures. Here, a high-sensitive dual-band sensor based on the complementary terahertz metamaterial composed of microsize circular ring gap array is proposed to detect the thickness and refractive index of thin film. The structure of this sensor is polarization insensitive dual-band operating mode and can be easily filled by the biomolecules. Simulation results demonstrate that the dual-band resonances are very sensitive to the dielectric variation, and the sensitivity levels of 99 GHz/refractive index unit (RIU) for mode f(1) and 242 GHz/RIU for mode f(2) are obtained and further enhanced by optimizing structures. Therefore, this structure can exhibit promising application for monitoring thin film thickness.
机译:最近,由于谐振结构的微源化间隙中的局部领域的增强和限制,基于太赫兹超材料的共振感应引起了相当大的关注。 这里,提出了一种基于由微化圆环间隙阵列组成的互补的太赫兹超材料的高敏感双频传感器,以检测薄膜的厚度和折射率。 该传感器的结构是偏振不敏感的双带操作模式,并且可以由生物分子容易地填充。 仿真结果表明,双带共振对介电变化非常敏感,获得MODE F(1)和242GHz / RIU的99GHz /折射率单元(RIU)的灵敏度水平 并通过优化结构进一步增强。 因此,该结构可以表现出用于监测薄膜厚度的有希望的应用。

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