An Additively Manufactured Wide Angle and Broadband Electromagnetic Camouflage Metasurface

Author:

Liang Qingxuan1ORCID,Yin Haoyu1,Feng Jiakun1,Xu Jiahui1,Yang Zhen1,Duan Yubing1,Li Dichen1

Affiliation:

1. State Key Laboratory of Manufacturing System Engineering Xi'an Jiaotong University Xi'an 710049 P. R. China

Abstract

Metasurface reveals distinguished application prospects profiting from its excellent manipulating capacity for electromagnetic (EM) wave using ultrathin thickness and the simple design method. Easy to conformal metasurface with high performance and integrated EM functions is highly in demand in many EM devices. Herein, an arched dual‐wavelength cloaking–illusion‐integrated metasurface consisting of two‐layer meta‐atoms is proposed successfully. A composite‐fused deposition molding packaging strategy of additive manufacturing is explored to fabricate the multilayer structures for metal meta‐atoms and dielectric substrates simultaneously. Simulation and measurement results show that the arched metasurface possesses polarization‐insensitive cloaking and illusion functions in 4.3–4.8 and 14.8–16.3 GHz, respectively. The effective incidence angle range covers from −45° to 45°. The excellent EM camouflage performance proves the effectiveness of our design and fabricating strategy, which paths a way for multifunctional metasurface‐based devices.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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