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Broadband Mid-infrared Dual-Band Double-Negative Metamaterial: Realized Using a Simple Geometry

机译:宽带中红外双频双频带双负材料:使用简单的几何实现实现

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摘要

We design and numerically demonstrate a novel metamaterial structure consisting of a dielectric layer sandwiched between two silver films and is perforated with two kinds of square-shaped holes at different angles, which is a dual-band double-negative (each band possesses simultaneously negative permittivity and permeability) metamaterial with broad NRI bands in mid-infrared region(3-30 mu m). The broadband of NRI contributed to the strong magnetic resonance caused by the excitation of surface plasmon polaritons. The influence of the number of square-shaped holes on the properties of the designed structures are also investigated by analyzing and comparing the transmission, permeability, permittivity, refractive index, and figure of merit. Then, by optimizing the structural parameters, the proposed structure exhibits a negative band with a figure of merit of 3.3, which is to our knowledge larger than previously reported plasmonic metamaterial in mid-infrared region(M-IR). The value of negative refractive index(NRI) reaches -6 and the bandwidth of NRI can reach up to 4.2 THz in the low-frequency band of M-IR region, which is the widest NRI band in M-IR spectrum at present as far as we know. Moreover, the metamaterial structure is simple and easy to be manufactured with standard fabrication techniques. This work will be very meaningful in designing dual-band negative-index material with broad NRI band and low loss. Finally, the proposed metamaterial has huge potential applications in multiband or broadband devices.
机译:我们设计和数值上展示了一种新的超材料结构,其包括夹在两个银膜之间的介电层,并且在不同角度的两种方形孔中穿孔,这是双频双负(每个频段同时具有负介电常数和渗透率)Metomate材料,中红外区域(3-30μm)。 NRI的宽带促成了由表面等离子体极性恒星的激发引起的强磁共振。通过分析和比较透射性,渗透率,介电常数,折射率和优异图,还研究了方形孔对方形孔数对所设计结构的性能的影响。然后,通过优化结构参数,所提出的结构表现出负频带,其值为3.3,这对于我们的知识比以前报告的中红外区域(M-IR)中的先前报告的等级材料大。负折射率(NRI)的值达到-6,NRI的带宽在M-IR区域的低频带中可以达到高达4.2至THz,这是目前的M-IR光谱中最宽的NRI带。据我们所知。此外,超材料结构简单且易于用标准制造技术制造。这项工作在设计具有广泛NRI带和低损耗的双带负数索材料方面非常有意义。最后,所提出的超材料在多频带或宽带设备中具有巨大的潜在应用。

著录项

  • 来源
    《Plasmonics》 |2018年第4期|共9页
  • 作者单位

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

    Metamaterials; Negative refractive index; Surface plasmons; Infrared;

    机译:超材料;负折射率;表面等离子体;红外线;

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