Circularly polarized plane terahertz waves radiated from a resonant tunneling diode integrated with a collimating metalens and quarter-wave plate
Terahertz flat optics based on metasurfaces can replace massive optical components with optically thin components. However, metasurfaces with unprecedented material properties frequently produce a specified function, and terahertz flat optics has yet to be commonly adopted in terahertz devices that...
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Veröffentlicht in: | Applied physics express 2024-08, Vol.17 (8), p.82001 |
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container_title | Applied physics express |
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creator | Suzuki, Takehito Endo, Kota Haruishi, Takahito Tsuruda, Kazuisao Urashima, Kouhei Yamamori, Shunji |
description | Terahertz flat optics based on metasurfaces can replace massive optical components with optically thin components. However, metasurfaces with unprecedented material properties frequently produce a specified function, and terahertz flat optics has yet to be commonly adopted in terahertz devices that require multiple functions. Here, we present a two-layer component composed of a collimating metalens and a quarter-wave plate that convert linearly polarized terahertz wide-angle radiation waves from a resonant tunneling diode to circularly polarized plane waves. Our findings would be applied to laminate structures with optical vortices, ultrahigh directivity and arbitrary wavefront control in 6 G wireless communications. |
doi_str_mv | 10.35848/1882-0786/ad52e5 |
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subjects | antenna metamaterial metasurface terahertz wave |
title | Circularly polarized plane terahertz waves radiated from a resonant tunneling diode integrated with a collimating metalens and quarter-wave plate |
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