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Narrowband perfect terahertz absorber based on polar-dielectrics metasurface

We theoretically propose a narrowband perfect absorber metasurface (PAMS) based on surface phonon polaritons in the terahertz range. The PAMS has unit cell consisting of a silver biarc on the top, a thin polar-dielectric in the middle and a silver layer at the bottom. The phonon polaritons are excit...

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Bibliographic Details
Published in:Chinese physics B 2020-05, Vol.29 (5), p.54210
Main Authors: Zhao, Meng-Meng, Fu, Shu-Fang, Zhou, Sheng, Song, Yu-Ling, Zhang, Qiang, Yin, Yong-Qi, Zhao, Yu-Tian, Liang, Hong, Wang, Xuan-Zhang
Format: Article
Language:English
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Summary:We theoretically propose a narrowband perfect absorber metasurface (PAMS) based on surface phonon polaritons in the terahertz range. The PAMS has unit cell consisting of a silver biarc on the top, a thin polar-dielectric in the middle and a silver layer at the bottom. The phonon polaritons are excited at the interface between the silver biarc and the polar dielectric, and enhance the absorption of the PAMS. The absorption peak is at 36.813 μm and the full width half maximum (FWHM) is nearly 36 nm, independent of the polarization and incidence angle. The electric fields are located at the split of the biarc silver layer and the quality factor Q is 1150. The FWHM decreases with the decreasing split width. When the thickness of the bottom layer is larger than 50 nm, the narrow band and high absorption are insensitive to the thickness of those layers. The designed absorber may have useful applications in terahertz spectra such as energy harvesting, thermal emitter, and sensing.
ISSN:1674-1056
DOI:10.1088/1674-1056/ab81fa