Fang Jiaxing, Zhu Wei, Cao Lin, Huang Xiaotian, Zhang Bohan, He Daping, Wang Shengxiang
Opt Express. 2023 Jul 3;31(14):23095-23105. doi: 10.1364/OE.494565.
We present and numerically verify a functionally hybrid dual-mode tunable polarization conversion metasurface based on graphene and vanadium dioxide (VO). The tunable polarization converter consists of two patterned graphene layers separated by grating which is composed of gold and VO. Due to the existence of phase change material VO, the polarization conversion mode can be switched flexibly between the transmission and reflection modes. Theoretical calculations show the proposed polarization conversion metasurface can obtain giant asymmetric transmission (AT) at 0.42 and 0.77 THz when VO is in the insulating state. Conversely, when VO is in the metallic state, the converter switches to the reflection mode, demonstrating broadband polarization conversion for both forward and backward incidences. Furthermore, the conductivity of graphene can be modulated by changing the gate voltage, which allows dynamic control polarization conversion bandwidth of the reflection mode as well as the AT of the transmission mode. The robustness of the metasurface has also been verified, the high polarization conversion efficiency and AT can be maintained over wide incidence angles up to 65° for both the xoz plane and yoz plane. These advantages make the proposed hybrid tunable polarization conversion metasurface a promising candidate for THz radiation switching and modulation.
我们提出并通过数值验证了一种基于石墨烯和二氧化钒(VO₂)的功能混合双模式可调谐偏振转换超表面。该可调谐偏振转换器由两个由金和VO₂组成的光栅分隔的图案化石墨烯层构成。由于相变材料VO₂的存在,偏振转换模式可以在透射和反射模式之间灵活切换。理论计算表明,当VO₂处于绝缘状态时,所提出的偏振转换超表面在0.42和0.77太赫兹处可获得巨大的非对称透射(AT)。相反,当VO₂处于金属状态时,转换器切换到反射模式,展示了对正向和反向入射的宽带偏振转换。此外,石墨烯的电导率可以通过改变栅极电压来调制,这允许动态控制反射模式的偏振转换带宽以及透射模式的AT。超表面的稳健性也得到了验证,在xoz平面和yoz平面高达65°的宽入射角范围内,都能保持高偏振转换效率和AT。这些优点使得所提出的混合可调谐偏振转换超表面成为太赫兹辐射开关和调制的有前途的候选者。