Simultaneous realization of electromagnetically induced transparency and electromagnetically induced reflectance in a metasurface
The analogue of electromagnetically induced transparency (EIT-like) and electromagnetically induced reflectance (EIR-like) effects have been intensively studied and achieved by using metasurfaces. Nevertheless, previous designs could realize only one of them and were unable to support both effects i...
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Veröffentlicht in: | Optics express 2021-04, Vol.29 (8), p.12580-12589 |
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creator | Liu, Wenbing Li, Hanhui Li, Chengquan Ding, Jifei Luo, Yi Wu, Wei Guo, Min Hong, Wei Huang, Lirong |
description | The analogue of electromagnetically induced transparency (EIT-like) and electromagnetically induced reflectance (EIR-like) effects have been intensively studied and achieved by using metasurfaces. Nevertheless, previous designs could realize only one of them and were unable to support both effects in a metasurface. Here we numerically and experimentally demonstrate a metasurface simultaneously exhibiting EIT-like and EIR-like effects. Qualitative analyses and quantitative calculations based on the electromagnetic multipole decomposition method are performed to reveal their formation mechanisms. Our work offers a simple avenue for simultaneously realizing EIT-like and EIR-like effects in a metasurface, which may find potential applications in sensing, filtering, and slow wave devices. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement |
doi_str_mv | 10.1364/OE.422220 |
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Nevertheless, previous designs could realize only one of them and were unable to support both effects in a metasurface. Here we numerically and experimentally demonstrate a metasurface simultaneously exhibiting EIT-like and EIR-like effects. Qualitative analyses and quantitative calculations based on the electromagnetic multipole decomposition method are performed to reveal their formation mechanisms. Our work offers a simple avenue for simultaneously realizing EIT-like and EIR-like effects in a metasurface, which may find potential applications in sensing, filtering, and slow wave devices. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement</abstract><cop>WASHINGTON</cop><pub>Optica Publishing Group</pub><pmid>33985012</pmid><doi>10.1364/OE.422220</doi><tpages>10</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Optics Physical Sciences Science & Technology |
title | Simultaneous realization of electromagnetically induced transparency and electromagnetically induced reflectance in a metasurface |
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