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Tunable broadband-negative-permeability metamaterials by hybridization at THz frequencies

机译:通过THz频率的杂交可调宽带 - 负渗透性超材料

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摘要

We present a numerical study of thermo-tunable broadband-negative-permeability metamaterial based on second-order hybridization operating at the THz regime. The conventional metal is replaced by InSb, in which the temperature-dependent conductivity plays a key role in tuning the separation of second-order-hybridization magnetic-resonance modes. It is demonstrated that the hybridization in a simple disk-pair dimer can be tuned by temperature, leading to a significant broadening of the negative-permeability at THz frequencies. By increasing the temperature of the InSb patterns in the structure from 300 to 450 K, the fractional bandwidth (FBW) of the negative permeability curve varies from 4.4% to 12.9%. The thermally-increased carrier-density of InSb reduces the kinetic inductance, the main mechanism of the enhanced magnetic-resonance and the stronger activated-hybridization. Moreover, optimization for the bandwidth of negative permeability is also carried out by changing the geometrical parameters to have a FBW of 20.9%. The equivalent LC-circuit model and standard retrieval method are performed to elaborate our proposed idea. Our results would pave the way for the implementations of diversified semiconductors in tunable broadband-negative-permeability and broadband-negative-refractive-index metamaterials at THz frequencies.
机译:基于THZ政权运行的二阶杂交,我们介绍了热可调宽带负渗透性超材料的数值研究。传统的金属由INSB代替,其中温度依赖性电导率在调整二阶杂交磁共振模式的分离时起着关键作用。证明简单的盘对二聚体中的杂交可以通过温度调节,导致在THz频率下的负渗透性大大扩展。通过提高300至450k的结构中的INSB模式的温度,负渗透曲线的分数带宽(FBW)从4.4%变化至12.9%。 INSB的热增加的载体密度降低了动能电感,增强磁共振的主要机理和更强的活化杂交。此外,还通过改变几何参数来进行负渗透性的带宽的优化,以具有20.9%的FBW。等效LC电路模型和标准检索方法进行了详细说明我们提出的想法。我们的结果将为THz频率的可调宽带 - 负渗透率和宽带负折射率超材料的多样化半导体的实现铺平了道路。

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  • 来源
    《RSC Advances》 |2020年第47期|共8页
  • 作者单位

    TNU Univ Sci Fac Phys &

    Technol Thai Nguyen Vietnam;

    Vietnam Acad Sci &

    Technol Inst Mat Sci Hanoi Vietnam;

    TNU Univ Sci Fac Phys &

    Technol Thai Nguyen Vietnam;

    Grad Univ Sci &

    Technol Vietnam Acad Sci &

    Technol Hanoi Vietnam;

    Vietnam Acad Sci &

    Technol Inst Mat Sci Hanoi Vietnam;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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