窄带
太赫兹辐射
材料科学
二氧化二钒
极化(电化学)
光学
宽带
光电子学
超宽带
电信
物理
纳米技术
薄膜
计算机科学
化学
物理化学
作者
Mingyu Zhang,Junyao Zhang,Yiwen Wu,Yang Lin,Baozhu Wang,Qi HanSSS
标识
DOI:10.1016/j.optcom.2025.131522
摘要
In this study, a multifunctional terahertz (THz) metasurface based on vanadium dioxide (VO 2 ) is proposed and demonstrated. Under the external stimulus of thermal, the proposed metasurface can achieve ultra-wideband absorption, perfect narrowband absorption and polarization selection by leveraging the phase transition characteristics of VO 2 . In its metal state, VO 2 enables the metasurface to function as a THz broadband absorber with an absorption efficiency exceeding 90% across a broad frequency range, exhibiting minimal polarization sensitivity . Conversely, in its insulating state, the metasurface operates as a narrowband absorber. The asymmetric split ring structure exhibits near-perfect absorption (>99.7%) for TE-polarized waves at 8.663 THz and complete reflection for TM-polarized waves, enabling effective polarization selectivity with a polarization extinction ratio of 25.15 dB. Through the analysis of impedance, electric field and surface current distribution, the absorbing mechanism is explained in detail. Additionally, we considered the impact of structural parameters and incident angles on the performance. The innovation and high performance of this metasurface provide a broader idea and method for the design of THz detectors, and have important application prospects in the fields of THz detection, modulation, and optical switches .
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