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用于超宽带、广角和偏振不敏感超材料完美吸收体的导电聚合物。

Conductive polymer for ultra-broadband, wide-angle, and polarization-insensitive metamaterial perfect absorber.

作者信息

Hai Le Dinh, Qui Vu Dinh, Tung Nguyen Hoang, Huynh Tran Van, Dung Nguyen Dinh, Binh Nguyen Thanh, Tuyen Le Dac, Lam Vu Dinh

出版信息

Opt Express. 2018 Dec 10;26(25):33253-33262. doi: 10.1364/OE.26.033253.

Abstract

We numerically and experimentally investigate a broadband, polarization-independent and wide-incident-angle metamaterial perfect absorber (MPA) based on conductive polymer. By optimizing the electrical conductivity of the polymer, a 16.7 GHz broadband MPA is observed with the absorptivity greater than 80% for both transverse magnetic and electric polarization. The measurement results performed in the range 8-18 GHz show a diametrical concatenation with simulation results and theoretical analysis. The absorption mechanism is explained by demonstrating the influence of polymer conductivity on the dissipated power, the equivalent impedance, and the induced electric field. Our work may contribute to further studies on broadband MPA using for various applications.

摘要

我们通过数值模拟和实验研究了一种基于导电聚合物的宽带、偏振无关且宽入射角的超材料完美吸收体(MPA)。通过优化聚合物的电导率,观察到一种16.7 GHz的宽带MPA,其对横向磁极化和横向电极化的吸收率均大于80%。在8 - 18 GHz范围内进行的测量结果与模拟结果和理论分析完全吻合。通过展示聚合物电导率对耗散功率、等效阻抗和感应电场的影响来解释吸收机制。我们的工作可能有助于进一步研究用于各种应用的宽带MPA。

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