Yue Yang, He Fengyan, Chen Lingling, Shu Fangzhou, Jing Xufeng, Hong Zhi
Opt Express. 2021 Jul 5;29(14):21810-21819. doi: 10.1364/OE.428758.
We realize and numerically demonstrate the analogue of electromagnetically induced transparency (EIT) with a high-Q factor in a metal-dielectric bilayer terahertz metamaterial (MM) via bright-bright mode coupling and bright-dark mode coupling. The dielectric MM with silicon dimer rectangular-ring-resonator (Si-DRR) supports either a bright high-Q toroidal dipole resonance (TD) or a dark TD with infinite Q value, while plasmonic MM with metallic rectangular-ring-resonator (M-RR) supports a low-Q electric dipole resonance (ED). The results show that the near-field coupling between the dark TD and bright ED behaves just as that between the two bright modes, which is dependent on the Q factor of the TD resonance. Further, due to the greatly enhanced near-field coupling between the bright ED and dark TD, the coupling distance is significantly extended to about 1.9 times of the wavelength (in media), and robust EIT with large peak value over 0.9 and high Q-factor is achieved. The proposed bilayer MM provides a new EIT platform for design and applications in high-Q cavities, sensing, and slow-light based devices.
我们通过亮-亮模式耦合和亮-暗模式耦合,在金属-介质双层太赫兹超材料(MM)中实现并数值演示了具有高Q因子的电磁诱导透明(EIT)类似物。具有硅二聚体矩形环谐振器(Si-DRR)的介质MM支持亮的高Q环形偶极子共振(TD)或具有无限Q值的暗TD,而具有金属矩形环谐振器(M-RR)的等离子体MM支持低Q电偶极子共振(ED)。结果表明,暗TD和亮ED之间的近场耦合与两个亮模式之间的近场耦合表现相同,这取决于TD共振的Q因子。此外,由于亮ED和暗TD之间的近场耦合大大增强,耦合距离显著扩展到约1.9倍波长(在介质中),并实现了具有超过0.9的大峰值和高Q因子的稳健EIT。所提出的双层MM为高Q腔、传感和基于慢光的器件的设计和应用提供了一个新的EIT平台。