Qing Ye Ming, Ma Hui Feng, Ren Yong Ze, Yu Shang, Cui Tie Jun
Opt Express. 2019 Feb 18;27(4):5253-5263. doi: 10.1364/OE.27.005253.
Optical switches based on dielectric nanostructures are highly desired at present. To enhance the wavelength-selective light absorption, and achieve an absorption-induced switching effect, here we propose a graphene-based metamaterial absorber that consists of a dielectric grating, a graphene monolayer, and a photonic crystal. Numerical results reveal that the dual-band absorption with an ultranarrow spectrum of the system is enhanced greatly due to the critical coupling, which is enabled by the combined effects of guided mode resonances and photonic band gap. The quality factor of the absorber can achieve a high value (>500), which is basically consistent with the coupled mode theory. Slow light emerges within the absorption window. In addition, electrostatic gating of graphene in the proposed structure provides dynamic control of the absorption due to the change of the chemical potential of the graphene, resulting in an optional multichannel switching effect. Unlike other one-dimensional devices, these effects can be applied to another polarization without changing the structure parameters, and the quality factor is significantly enhanced (>1000). The tunable light absorption offered by the simple structure with an all-dielectric configuration will provide potential applications for graphene-based optoelectronic devices in the near-infrared range, such as narrowband selective filters, detectors, optical switches, modulators, slow optical devices, etc.
目前,基于介电纳米结构的光开关备受关注。为了增强波长选择性光吸收并实现吸收诱导的开关效应,在此我们提出一种基于石墨烯的超材料吸收器,它由一个介电光栅、一个石墨烯单层和一个光子晶体组成。数值结果表明,由于临界耦合,系统的具有超窄光谱的双波段吸收得到了极大增强,这是由导模共振和光子带隙的综合效应实现的。吸收器的品质因数可以达到很高的值(>500),这与耦合模理论基本一致。在吸收窗口内出现了慢光。此外,在所提出的结构中对石墨烯进行静电门控,由于石墨烯化学势的变化,可实现对吸收的动态控制,从而产生可选的多通道开关效应。与其他一维器件不同,这些效应可以应用于另一种偏振而无需改变结构参数,并且品质因数显著提高(>1000)。具有全介电配置的简单结构所提供的可调谐光吸收将为近红外范围内基于石墨烯的光电器件提供潜在应用,如窄带选择性滤波器、探测器、光开关、调制器、慢光器件等。