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基于柱面波扩展理论的低散射超材料外壳的实现

Realization of low-scattering metamaterial shell based on cylindrical wave expanding theory.

作者信息

Wu Xiaoyu, Hu Chenggang, Wang Min, Pu Mingbo, Luo Xiangang

出版信息

Opt Express. 2015 Apr 20;23(8):10396-404. doi: 10.1364/OE.23.010396.

Abstract

In this paper, we demonstrate the design of a low-scattering metamaterial shell with strong backward scattering reduction and a wide bandwidth at microwave frequencies. Low echo is achieved through cylindrical wave expanding theory, and such shell only contains one metamaterial layer with simultaneous low permittivity and permeability. Cut-wire structure is selected to realize the low electromagnetic (EM) parameters and low loss on the resonance brim region. The full-model simulations show good agreement with theoretical calculations, and illustrate that near -20dB reduction is achieved and the -10 dB bandwidth can reach up to 0.6 GHz. Compared with the cloak based on transformation electromagnetics, the design possesses advantage of simpler requirement of EM parameters and is much easier to be implemented when only backward scattering field is cared.

摘要

在本文中,我们展示了一种低散射超材料外壳的设计,该外壳在微波频率下具有强后向散射降低特性和宽带宽。通过柱面波扩展理论实现了低回波,并且这种外壳仅包含一层同时具有低介电常数和磁导率的超材料。选择切割线结构以在谐振边缘区域实现低电磁(EM)参数和低损耗。全模型仿真与理论计算结果吻合良好,表明实现了近20dB的降低,并且-10dB带宽可达0.6GHz。与基于变换电磁学的隐身衣相比,该设计具有对EM参数要求更简单的优势,并且在仅关注后向散射场时更易于实现。

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