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Mechanically reconfigurable terahertz polarization converter by coupling-mediated metasurfaces
【摘要】 Free manipulation of electromagnetic waves in the terahertz(THz) band based on metasurface functional devices has been the focus of research in recent years. Among these devices, active metasurfaces have generated extensive research interest due to their reconfigurability. In this work, we demonstrate a mechanically reconfigurable THz polarization converter that consists of two parallel transmissive metasurfaces with a tunable spacing. By mechanically adjusting the coupling strength between the metasurfaces, the orthogonal polarization conversion of the incident linearly polarized THz waves can be tuned. Specifically, the device can be tuned from efficient dual-frequency orthogonal polarization conversion to efficient single-frequency orthogonal polarization conversion. After a gradual decrease in efficiency, it is finally changed to a low transmission state as the gap distance increases from 150 to 800 μm. We theoretically analyze the tuning process under different spacings and experimentally verify it using a vector network analyzer. Our proposed design is straightforward and robust, with the potential to find wide applications in THz science and technology.
【Abstract】 Free manipulation of electromagnetic waves in the terahertz(THz) band based on metasurface functional devices has been the focus of research in recent years. Among these devices, active metasurfaces have generated extensive research interest due to their reconfigurability. In this work, we demonstrate a mechanically reconfigurable THz polarization converter that consists of two parallel transmissive metasurfaces with a tunable spacing. By mechanically adjusting the coupling strength between the metasurfaces, the orthogonal polarization conversion of the incident linearly polarized THz waves can be tuned. Specifically, the device can be tuned from efficient dual-frequency orthogonal polarization conversion to efficient single-frequency orthogonal polarization conversion. After a gradual decrease in efficiency, it is finally changed to a low transmission state as the gap distance increases from 150 to 800 μm. We theoretically analyze the tuning process under different spacings and experimentally verify it using a vector network analyzer. Our proposed design is straightforward and robust, with the potential to find wide applications in THz science and technology.
【Key words】 mechanically reconfigurable THz metasurface; polarization converter; tunable spacing; vector network analyzer;
- 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2024年12期
- 【分类号】O441.4
- 【下载频次】6