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Tunable THz perfect absorber using graphene-based metamaterials

机译:使用石墨烯基超材料的可调太赫兹完美吸收体

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摘要

A tunable THz absorber, with absorbance more than 90% is proposed, and numerically characterized. The absorber structure is based on metamaterials with unit cells consisting of two patterned graphene layers separated by a 5-nm thick layer of Al2O3. Numerical results show that when the chemical potential of the top graphene microribbons are tuned by an external variable bias and that of the lower graphene fishnet is kept at mu(C)=0, frequency of the absorption peaks can be tuned as desired, therefore we can have a tunable or switchable absorber. The proposed absorber can have applications in designing tunable reflective THz filters or tunable THz switches and modulators. It can also be used for cloaking objects in THz range. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种吸收率超过90%的可调THz吸收器,并进行了数值表征。吸收体结构基于超材料,其单位单元由被5纳米厚的Al2O3层隔开的两个图案化石墨烯层组成。数值结果表明,当通过外部可变偏压调整顶部石墨烯微带的化学势,而下部石墨烯鱼网的化学势保持在mu(C)= 0时,可以根据需要调整吸收峰的频率,因此我们可以具有可调或可切换的吸收器。提出的吸收器可以在设计可调反射THz滤波器或可调THz开关和调制器方面具有应用。它也可以用于掩盖THz范围内的物体。 (C)2015 Elsevier B.V.保留所有权利。

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