控制重构
兰姆达
相(物质)
有损压缩
带宽(计算)
级联
光学
物理
计算机科学
工程类
电信
嵌入式系统
人工智能
量子力学
化学工程
作者
Haoran Li,Yunfei Xia,Peiliang Wang,Kaixuan Si,Ling Miao,Zhaowang Cao,Jianjun Jiang
标识
DOI:10.1109/tmtt.2023.3346948
摘要
A phase-loss cascade combination (PLCC) method is proposed to provide a more intuitive idea for designing multilayer absorbers. The method focuses on reconfiguring the phase and field distribution of the multilayer structure and realizes lossy absorption in combination with them. Accordingly, three functional layers are designed to achieve phase reconfiguration, reflection suppression, and loss effects. In addition, the standing wave distribution is presented to visualize the relationship between phase and field. Varactors are utilized to broaden the reconfigurable bandwidth at low frequencies. The final measured results demonstrate a reconfigurable ultrabroadband absorption of 0.54–16.29 GHz. The low profile remains constant throughout the design progress with approximately $0.036\lambda _{L}$ ( $\lambda _{L}$ is the longest reconfigurable wavelength).
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