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Wide Incidence Angle-Insensitive Metamaterial Absorber for Both TE and TM Polarization using Eight-Circular-Sector

机译:TE和TM极化的八入射扇形宽入射角不敏感超材料吸收体

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摘要

In this paper, a wide incidence angle-insensitive metamaterial absorber is proposed using eight-circular-sector (ECS). Under normal incidence, the proposed absorber shows high absorptivity at different polarizations due to its symmetric geometry. Under oblique incidence, zero-reflection conditions for transverse electric (TE) and transverse magnetic (TM) polarization are different. Nevertheless, the proposed absorber shows high absorptivity under oblique incidence of both TE and TM polarization due to ECS. The performance of the proposed absorber was demonstrated with full-wave simulation and measurements. The simulated absorptivity at the specular angles exceed 90% and the frequency variation is less than 0.7% at approximately 9.26 GHz up to a 70° incidence angle in both TM and TE polarization. We built the proposed absorber on a printed-circuit board with 20 × 20 unit cells, and we demonstrated its performance experimentally in free space. The measured absorptivity at 9.26 GHz for the specular angles is close to 98% for all polarization angles under normal incidence. As the incidence angle is varied from 0° to 70°, the measured absorptivity at 9.26 GHz for the specular angles remain above 92% in both TE and TM polarization.
机译:在本文中,提出了一种使用八圆扇区(ECS)的宽入射角不敏感超材料吸收器。在法向入射下,由于其对称的几何形状,所提出的吸收体在不同的极化下显示出高吸收率。在倾斜入射下,横向电(TE)和横向磁(TM)极化的零反射条件不同。然而,由于ECS,建议的吸收体在TE和TM极化的斜入射下均显示出高吸收率。通过全波仿真和测量证明了所提出的吸收器的性能。在TM和TE偏振中,镜面反射率的模拟吸收率均超过90%,并且在大约9.26°GHz处直至70°入射角时,频率变化小于0.7%。我们将建议的吸收器构建在具有20××20个单元电池的印刷电路板上,并在自由空间中通过实验证明了其性能。在法线入射下,所有偏振角在9.26 GHz处测得的吸收率接近98%。当入射角从0°变为70°时,在TE和TM偏振下,镜面反射角在9.26 GHz处测得的吸收率均保持在92%以上。

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