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Terahertz metamaterials: Design, implementation, modeling and applications

机译:太赫兹超材料:设计,实施,建模和应用

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摘要

Sub-wavelength metamaterial structures are of great fundamental and practical interest because of their ability to manipulate the propagation of electromagnetic waves. We review here our recent work on the design, simulation, implementation and equivalent circuit modeling of metamaterial devices operating at Terahertz frequencies. THz metamaterials exhibiting plasmon-induced transparency are realized through the hybridization of double split ring resonators on either silicon or flexible polymer substrates and exhibiting slow light properties. THz metamaterials perfect absorbers and stereometamaterials are realized with multifunctional specifications such as broadband absorbing, switching, and incident light polarization selectivity.
机译:亚波长超材料结构具有操纵电磁波传播的能力,因此具有重要的基础和实际意义。我们在这里回顾我们在太赫兹频率下工作的超材料器件的设计,仿真,实现和等效电路建模方面的最新工作。通过在硅或柔性聚合物衬底上的双裂环谐振器的杂交,并展现出慢光性能,可以实现显示出等离激元诱导的透明性的太赫兹超材料。太赫兹超材料完美的吸收体和立体超材料具有多功能规格,例如宽带吸收,切换和入射光偏振选择性。

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