太赫兹辐射
材料科学
光学
宽带
圆极化
极化(电化学)
线极化
带宽(计算)
光电子学
吸收(声学)
物理
电信
计算机科学
物理化学
化学
微带线
激光器
作者
Dexian Yan,Miao Meng,Jiu‐sheng Li,Jining Li,Xiangjun Li
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2020-09-08
卷期号:28 (20): 29843-29843
被引量:127
摘要
Integrating tunable characteristics and multiple functions into a single metasurface has become a new scientific and technological undertaking that needs to deal with huge challenges, especially in the terahertz frequency region. The multifunctional design combining the broadband absorption and broadband polarization conversion using a single switchable metasurface is proposed in this paper. The switchable performance can be realized by treating the insulation to metal phase transition properties of vanadium dioxide (VO 2 ). At high temperature (74 °C), the proposed metasurface can be used as a broadband absorber which consists of a VO 2 square ring, polyimide (PI) spacer, and VO 2 film. Simulated results show that the terahertz wave absorption can reach above 90% with the bandwidth ratio of 75% in the frequency range of 0.74 THz-1.62 THz. This absorber is insensitive to polarization resulted from the symmetry structure and also shows a good performance at large incident angles. Once the temperature is lower than the cooling phase transition temperature (about 62 °C) and VO 2 is in insulation state, the metasurface can be transformed into a broadband linear-to-circular polarization converter. Numerical simulation depicts that the ellipticity reaches to -1 and the axis ratio is lower than 3 dB from 1.47 THz to 2.27 THz. The designed switchable metasurface provides the potential to be used in the fields of advanced research and intelligent applications in the terahertz frequency region.
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