School of Electrical and Electronic Engineering, Chung-Ang University, 221 Heukseok-Dong Dongjak-Gu, Seoul, 156-756, Republic of Korea.
Sci Rep. 2017 Jul 7;7(1):4891. doi: 10.1038/s41598-017-05330-z.
In this study, the novel electronically switchable broadband metamaterial absorber, using a PIN diode, is proposed. The unit cell of the absorber was designed with a Jerusalem-cross resonator and an additive ring structure, based on the FR-4 dielectric substrate. Chip resistors and PIN diodes were used to provide both a broadband characteristic and a switching capability. To satisfy the polarization insensitivity, the unit cell was designed as a symmetrical structure, including the DC bias network, electronic devices, and conductor patterns. The performance of the proposed absorber was verified using full-wave simulation and measurements. When the PIN diode was in the ON state, the proposed absorber had a 90% absorption bandwidth from 8.45-9.3 GHz. Moreover, when the PIN diode was in the OFF state, the 90% absorption bandwidth was 9.2-10.45 GHz. Therefore, the absorption band was successfully switched between the low-frequency band and the high-frequency band as the PIN diode was switched between the ON and OFF states. Furthermore, the unit cell of the proposed absorber was designed as a symmetrical structure, and its performance showed insensitivity with respect to the polarization angle.
在这项研究中,提出了一种使用 PIN 二极管的新型可电控宽带超材料吸波器。该吸波器的单元结构基于 FR-4 介电基板,设计有一个耶路撒冷十字形谐振器和一个附加环结构。芯片电阻器和 PIN 二极管用于提供宽带特性和开关功能。为了满足偏振不敏感性,单元结构设计为具有直流偏置网络、电子器件和导体图案的对称结构。使用全波仿真和测量验证了所提出的吸波器的性能。当 PIN 二极管处于 ON 状态时,所提出的吸波器在 8.45-9.3GHz 频段具有 90%的吸收带宽。此外,当 PIN 二极管处于 OFF 状态时,90%吸收带宽为 9.2-10.45GHz。因此,当 PIN 二极管在 ON 和 OFF 状态之间切换时,吸收带可以成功地在低频带和高频带之间切换。此外,所提出的吸波器的单元结构设计为对称结构,其性能表现出对偏振角的不敏感性。