Chen Yifan, Liu Zexu, Li Yuke, Hu ZhengDa, Wu Jingjing, Wang Jicheng
Opt Express. 2022 Jun 20;30(13):23828-23839. doi: 10.1364/OE.462221.
The bound state in the continuum (BIC) is widely applied to metamaterial study in order to obtain robust resonance and high quality (Q) factor. In this paper, we propose a metallic metasurface structure that can support double types of BICs, and acquire quasi-BIC state by restructuring each type with a specific approach. Electric field distribution is investigated to explore the physic mechanism behind the evolution of BICs. Moreover, we substitute structured graphene with corresponding metal counterparts. The promoted design is able to switch freely between BIC and quasi-BIC state even after the fabrication, as the graphene would convert from semiconductor-like to metal-like when increasing the Fermi level. Further exploration on electric field distribution demonstrates the metallicity difference between graphene and gold, which leads to the exotic phenomenon emerge on the proposed metal-graphene structure. Finally, the proposed metal-graphene structure is applied to a digital coding display through Fermi level regulating. Therefore, our work provides deep insights to the BIC metasurface investigation, and introduces a desirable improvement for current BIC metasurface design to achieve the free conversion between BIC and quasi-BIC states.
连续域束缚态(BIC)被广泛应用于超材料研究中,以获得稳健的共振和高品质(Q)因子。在本文中,我们提出了一种金属超表面结构,它可以支持两种类型的BIC,并通过特定方法对每种类型进行重构来获得准BIC状态。通过研究电场分布来探索BIC演化背后的物理机制。此外,我们用相应的金属替代结构化石墨烯。这种改进后的设计即使在制造后也能够在BIC和准BIC状态之间自由切换,因为当费米能级增加时,石墨烯会从类半导体转变为类金属。对电场分布的进一步探索揭示了石墨烯和金之间的金属性差异,这导致了在所提出的金属 - 石墨烯结构上出现奇异现象。最后,通过费米能级调节将所提出的金属 - 石墨烯结构应用于数字编码显示。因此,我们的工作为BIC超表面研究提供了深刻见解,并为当前BIC超表面设计引入了一种理想的改进,以实现BIC和准BIC状态之间的自由转换。