Gao Fei, Zhu Zhihong, Xu Wei, Zhang Jianfa, Guo Chucai, Liu Ken, Yuan Xiaodong, Qin Shiqiao
Opt Express. 2017 May 1;25(9):9579-9586. doi: 10.1364/OE.25.009579.
We present a wave absorption design consisting of periodical arrays of dielectric bricks on the dielectric substrate, which is coated with single-layered and nonstructured graphene, supported by a thick piece of metal. The design is demonstrated to broadband near-perfect absorption with 0.82 terahertz (THz) bandwidth of over 90% absorption and with central frequency of 1.68 THz. The broadband absorption mechanism originates from two contributions. Firstly, the periodical arrays of dielectric bricks on the nonstructured graphene can provide both a set of graphene plasmon resonances with large relative frequency interval and relative radiation rate γ/ω in the THz range. Secondly, the linewidth of each resonance can be broadened by the far-field interaction between neighboring resonators to overlap and spread over a wide frequency region in the THz range. The design in this paper is simple, and consequently facilitates the fabrication and promotes the application of broadband graphene absorbers.
我们提出了一种由介质砖在介质衬底上的周期性阵列组成的波吸收设计,该介质衬底涂覆有单层且无结构的石墨烯,并由一块厚金属支撑。该设计被证明具有宽带近完美吸收特性,在0.82太赫兹(THz)带宽内吸收率超过90%,中心频率为1.68 THz。宽带吸收机制源于两个方面。首先,无结构石墨烯上的介质砖周期性阵列能够在太赫兹范围内提供一组具有较大相对频率间隔和相对辐射率γ/ω的石墨烯等离子体共振。其次,每个共振的线宽可以通过相邻谐振器之间的远场相互作用而展宽,从而在太赫兹范围内重叠并扩展到很宽的频率区域。本文中的设计简单,因此便于制造并促进了宽带石墨烯吸收器的应用。