Zhang Xingyuan, Shi Wenqiao, Gu Jianqiang, Cong Longqing, Chen Xieyu, Wang Kemeng, Xu Quan, Han Jiaguang, Zhang Weili
Opt Express. 2022 Aug 1;30(16):29088-29098. doi: 10.1364/OE.462247.
Bound state in the continuum (BIC) refers to the trapped state in the radiation continuum of a system. In the terahertz band, BIC provides a unique and feasible method to design devices with ultra-high quality factor (Q factor) and to achieve intense terahertz-matter interaction, which is of great value to terahertz science and technology. Here, multiple BICs protected by the resonance symmetry in the terahertz metasurface consisting of metallic split ring resonators (SRR) is demonstrated. The evolution from the BIC to the quasi-BIC (QBIC) is induced by changing the gap width of the SRRs. The proposed BICs are experimentally demonstrated and analyzed by the coupled mode theory along with the numerical simulation. It is found that the leakage behavior of these QBICs is strongly affected by the intrinsic Ohmic loss in the SRRs while it is quite robust to the tilted incidence.
连续域束缚态(BIC)是指系统辐射连续谱中的俘获态。在太赫兹波段,BIC为设计具有超高品质因数(Q因子)的器件以及实现强烈的太赫兹与物质相互作用提供了一种独特且可行的方法,这对太赫兹科学技术具有重要价值。在此,展示了由金属开口环谐振器(SRR)构成的太赫兹超表面中受共振对称性保护的多个BIC。通过改变SRR的间隙宽度可诱导从BIC到准BIC(QBIC)的转变。所提出的BIC通过耦合模理论结合数值模拟进行了实验验证和分析。发现这些QBIC的泄漏行为受SRR中固有欧姆损耗的强烈影响,而对倾斜入射相当稳健。