Xie Qin, Dong Guang-Xi, Wang Ben-Xin, Huang Wei-Qing
School of Science, Jiangnan University, Wuxi, 214122, China.
School of Physics and Electronics, Hunan University, Changsha, 410082, China.
Nanoscale Res Lett. 2018 Sep 21;13(1):294. doi: 10.1186/s11671-018-2677-0.
We propose a planar metamaterial formed by four-strip metallic resonators, which can achieve high-Q Fano resonance in terahertz regime. This terahertz planar metamaterial supports a sharp Fano resonance at 0.81 THz with 25% transmission. The resonance bandwidth of the dip is 0.014 THz with the Q-factor of 58. The interference between the bright mode and dark mode leads to the Fano line shape. This sharp Fano profile is explained by the electromagnetic theory of Fano resonance. Moreover, multiple Fano resonances can be realized by adding more strips into the original structure. As an example, two Fano dips with Q-factors of 61 and 65 can be achieved via a five-strip structure.
我们提出了一种由四条带状金属谐振器构成的平面超材料,它能够在太赫兹频段实现高品质因数的法诺共振。这种太赫兹平面超材料在0.81太赫兹处支持一个尖锐的法诺共振,传输率为25%。该凹陷的共振带宽为0.014太赫兹,品质因数为58。亮模式和暗模式之间的干涉导致了法诺线形。这种尖锐的法诺轮廓由法诺共振的电磁理论进行解释。此外,通过在原始结构中添加更多条带,可以实现多个法诺共振。例如,通过五条带结构可以实现品质因数分别为61和65的两个法诺凹陷。