Wang Ruoxing, Li Li, Guo Tong, Wang Tianzhi, Liu Jianlong, Tian Hao, Tian Fengjun, Sun Weimin
Appl Opt. 2019 Dec 1;58(34):9406-9410. doi: 10.1364/AO.58.009406.
We present, by simulations, a metastructured graphene/liquid crystal hybrid tuning terahertz perfect absorber that consists of graphene disk resonator arrays above a metallic layer separated with liquid crystal substrate. The liquid crystal refractive index and the graphene Fermi level are utilized to implement double-tuning operation to push the spectra scanning limit of the terahertz absorber. Our simulations demonstrate high performance of a near-linear broad tuning region and near-unity absorbance with wide incident angle and polarization independence. The range of the resonant frequency scan is notably enlarged at a spectral ratio of as high as /=50 while ensuring absorbance beyond 90%. Such graphene/liquid crystal hybrid tuning scheme would be preferable to push the working-band limit of terahertz perfect absorbers.
通过模拟,我们展示了一种亚结构石墨烯/液晶混合调谐太赫兹完美吸收体,它由金属层上方的石墨烯圆盘谐振器阵列组成,该金属层与液晶衬底隔开。利用液晶折射率和石墨烯费米能级实现双调谐操作,以拓展太赫兹吸收体的光谱扫描极限。我们的模拟结果表明,该吸收体具有高性能,调谐范围近线性且宽广,在宽入射角和偏振无关的情况下吸光度接近单位值。在高达 /=50 的光谱比下,共振频率扫描范围显著扩大,同时确保吸光度超过 90%。这种石墨烯/液晶混合调谐方案对于拓展太赫兹完美吸收体的工作频段极限将是优选的。