Peng Jun, Leng Jin, Cao Duo, He Xiaoyong, Lin Fangting, Liu Feng
Appl Opt. 2021 Aug 1;60(22):6520-6525. doi: 10.1364/AO.427419.
Based on asymmetric graphene ellipses, the tunable propagation characteristics of metamaterial absorber (MMA) have been investigated in the THz region. Two distinct absorption peaks of 84% and 90% are observed at 1.06 THz and 1.67 THz, respectively. Besides a high Q factor exceeding 20, the Fano resonance can also be modulated in a wide range (e.g., the frequency modulation depth reaches more than 43.8% if the Fermi energy level changes in the range of 0.2-1.0 eV). Additionally, a bidirectional THz MMA is achieved by replacing the metal substrate with a uniform graphene layer. If the terahertz wave is incident in the forward direction, the proposed graphene double stripe microstructure shows a typical MMA with its absorption reaching 88%. On the other hand, if the terahertz wave is incident in the reverse direction, the graphene double stripe microstructure behaves as a reflective modulator, and its amplitude and frequency MD will reach 60% and 85%. These results contribute to the design of tunable THz devices, such as filters, absorbers, and modulators.
基于非对称石墨烯椭圆结构,对太赫兹波段超材料吸收器(MMA)的可调传播特性进行了研究。分别在1.06太赫兹和1.67太赫兹处观察到84%和90%的两个明显吸收峰。除了超过20的高品质因数外,法诺共振也能在很宽的范围内进行调制(例如,如果费米能级在0.2 - 1.0电子伏特范围内变化,频率调制深度超过43.8%)。此外,通过用均匀的石墨烯层代替金属衬底实现了双向太赫兹MMA。如果太赫兹波正向入射,所提出的石墨烯双条纹微结构表现出典型的MMA,其吸收率达到88%。另一方面,如果太赫兹波反向入射,石墨烯双条纹微结构表现为反射调制器,其幅度和频率调制深度将分别达到60%和85%。这些结果有助于可调太赫兹器件的设计,如滤波器、吸收器和调制器。