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Simulation Fabrication and Characterization of THz Metamaterial Absorbers

机译:太赫兹超材料吸收器的仿真制作和表征

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摘要

Metamaterials (MM), artificial materials engineered to have properties that may not be found in nature, have been widely explored since the first theoretical1 and experimental demonstration2 of their unique properties. MMs can provide a highly controllable electromagnetic response, and to date have been demonstrated in every technologically relevant spectral range including the optical3, near IR4, mid IR5 , THz6 , mm-wave7 , microwave8 and radio9 bands. Applications include perfect lenses10, sensors11, telecommunications12, invisibility cloaks13 and filters14,15. We have recently developed single band16, dual band17 and broadband18 THz metamaterial absorber devices capable of greater than 80% absorption at the resonance peak. The concept of a MM absorber is especially important at THz frequencies where it is difficult to find strong frequency selective THz absorbers19. In our MM absorber the THz radiation is absorbed in a thickness of ~ λ/20, overcoming the thickness limitation of traditional quarter wavelength absorbers. MM absorbers naturally lend themselves to THz detection applications, such as thermal sensors, and if integrated with suitable THz sources (e.g. QCLs), could lead to compact, highly sensitive, low cost, real time THz imaging systems.
机译:自从其具有独特性质的第一个理论 1 和实验演示 2 开始,人们就广泛地探索了被设计为具有自然界中无法发现的特性的人造材料超材料(MM)。 。 MM可以提供高度可控的电磁响应,并且迄今为止,在所有与技术相关的光谱范围内,包括光学 3 ,近IR 4 ,中红外 5 ,THz 6 ,毫米波 7 ,微波 8 和无线电 9 波段。应用包括完美镜片 10 ,传感器 11 ,电信 12 ,隐形斗篷 13 和滤镜 14, 15 。我们最近开发了单频带 16 ,双频带 17 和宽带 18 太赫兹超材料吸收器,能够在共振峰吸收80%以上。 MM吸收器的概念在太赫兹频率尤其重要,因为很难找到强频率选择性太赫兹吸收器 19 。在我们的MM吸收器中,太赫兹辐射的吸收厚度约为λ/ 20,克服了传统四分之一波长吸收器的厚度限制。 MM吸收器自然适用于太赫兹检测应用,例如热传感器,并且如果与合适的太赫兹源(例如QCL)集成在一起,可能会导致紧凑,高度灵敏,低成本的实时太赫兹成像系统。

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