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Tunable terahertz metamaterial absorber based on Dirac semimetal films

机译:基于Dirac半膜的可调Terahertz超材料吸收器

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摘要

In this paper, the tunable properties of metamaterial absorbers based on 3D Dirac semimetal films (DSFs) in the terahertz (THz) regime are discussed in theory. We consider the absorbers with square-shaped, circular-patch, and cross-shaped resonators. These resonances are theoretically polarization-insensitive at normal incidence because of their 90 degrees rotational symmetry and can achieve perfect absorption in numerical simulation. We then introduce dual-band and broadband absorbers by combining two DSF-based square-shaped (or circular-patch) resonators into one unit cell with different sizes. Unlike with a conventional metal-based absorber, the absorption of a DSF-based absorber can be dynamically tuned by varying the Fermi energy instead of refabricating the structures. Moreover, the DSFs can be regarded as a "Salisbury screen" of an absorber to block the transmission at the THz frequencies, which can be more convenient than graphene in the application of a tunable absorber. Our designs have potential applications in various fields such as sensors, thermal detectors, and imagers. (C) 2018 Optical Society of America
机译:本文在理论上讨论了基于太赫兹(第四ZHZ)制度的三维狄拉科半膜(DSF)的超材料吸收剂的可调谐性质。我们考虑具有方形,圆形贴片和交叉形谐振器的吸收器。由于其90度旋转对称性,这些共振是在正常发病率下的理论上极化不敏感,并且可以在数值模拟中实现完美的吸收。然后,我们通过将两个DSF的方形(或圆形贴片)谐振器组合成具有不同尺寸的一个单元电池来引入双频带和宽带吸收器。与传统的基于金属基吸收器不同,可以通过改变FERMI能量来动态调谐基于DSF的吸收剂的吸收,而不是改造结构。此外,DSF可以被视为吸收器的“Salisbury屏幕”,以阻止THz频率处的传输,这在应用可调谐吸收器时可以比石墨烯更方便。我们的设计在各种领域具有潜在的应用,例如传感器,热检测器和成像仪。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第32期|共7页
  • 作者单位

    Shandong Univ Sci &

    Technol Coll Elect Engn &

    Automat Qingdao 266510 Peoples R China;

    Shandong Univ Sci &

    Technol Coll Elect Engn &

    Automat Qingdao 266510 Peoples R China;

    Shandong Univ Sci &

    Technol Coll Elect Commun &

    Phys Qingdao 266510 Peoples R China;

    Shandong Univ Sci &

    Technol Coll Elect Commun &

    Phys Qingdao 266510 Peoples R China;

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