Zhu Huali, Zhang Yong, Ye Longfang, Li Yukun, Xu Yuehang, Xu Ruimin
Opt Express. 2020 Dec 21;28(26):38626-38637. doi: 10.1364/OE.414039.
In this paper, we propose and demonstrate a switchable terahertz metamaterial absorber with broadband and multi-band absorption based on a simple configuration of graphene and vanadium dioxide (VO). The switchable functional characteristics of the absorber can be achieved by changing the phase transition property of VO. When VO is insulating, the device acts as a broadband absorber with absorbance greater than 90% under normal incidence from 1.06 THz to 2.58 THz. The broadband absorber exhibits excellent absorption performance under a wide range of incident and polarization angles for TE and TM polarizations. Moreover, the absorption bandwidth and intensity of the absorber can be dynamically adjusted by changing the Fermi energy level of graphene. When VO is in the conducting state, the designed metamaterial device acts as a multi-band absorber with absorption frequencies at 1 THz, 2.45 THz, and 2.82 THz. The multi-band absorption is achieved owing to the fundamental resonant modes of the graphene ring sheet, VO hollow ring patch, and coupling interaction between them. Moreover, the multi-band absorber is insensitive to polarization and incident angles for TE and TM polarizations, and the three resonance frequencies can be reconfigured by changing the Fermi energy level of graphene. Our designed device exhibits the merits of bi-functionality and a simple configuration, which is very attractive for potential terahertz applications such as intelligent attenuators, reflectors, and spatial modulators.
在本文中,我们基于石墨烯和二氧化钒(VO₂)的简单结构,提出并展示了一种具有宽带和多波段吸收功能的可切换太赫兹超材料吸收器。该吸收器的可切换功能特性可通过改变VO₂的相变特性来实现。当VO₂处于绝缘状态时,该器件在1.06太赫兹至2.58太赫兹的垂直入射下作为宽带吸收器,吸收率大于90%。该宽带吸收器在TE和TM极化的宽入射角和偏振角范围内均表现出优异的吸收性能。此外,通过改变石墨烯的费米能级,可以动态调节吸收器的吸收带宽和强度。当VO₂处于导电状态时,所设计的超材料器件作为多波段吸收器,吸收频率分别为1太赫兹、2.45太赫兹和2.82太赫兹。这种多波段吸收是由于石墨烯环形薄片、VO₂空心环形贴片及其之间的耦合相互作用的基本共振模式实现的。此外,该多波段吸收器对TE和TM极化的偏振和入射角不敏感,并且通过改变石墨烯的费米能级可以重新配置三个共振频率。我们设计的器件具有双功能和结构简单的优点,这对于诸如智能衰减器、反射器和空间调制器等潜在太赫兹应用非常有吸引力。