Ma Yu, Zhang Tao, Mao MingYu, Zhang Dan, Zhang Haifeng
Opt Express. 2020 Dec 21;28(26):39890-39903. doi: 10.1364/OE.412594.
A tunable multifunctional modulator of the stacked graphene-based hyperbolic metamaterial (HM) cells is proposed. The dielectric constant and group index of HM are theoretically investigated. The calculated results show that, for the cell structure, a transmission window in the reflection zone (TWRZ) can be obtained at the normal incidence, but all reflections are converted to the transmission when the incident angle is near 82°. Concurrently, a single frequency absorption in the transmission zone (SFATZ) is realized, which can be adjusted by the chemical potential of graphene. For the whole structure composed of cell structures with different chemical potentials, the ultra-wideband absorption and transmission window in the absorption zone (TWAZ) can be achieved, which can work in different frequency bands if the given structural parameters can be tailored. Those computed results can apply for switchable frequency-dependent and angle-dependent reflection-transmission modulations, single frequency and ultra-wideband absorbers, and a logic switch based on the TWAZ.
提出了一种基于堆叠石墨烯的双曲线型超材料(HM)单元的可调谐多功能调制器。从理论上研究了HM的介电常数和群折射率。计算结果表明,对于单元结构,在垂直入射时可在反射区获得一个透射窗口(TWRZ),但当入射角接近82°时,所有反射都会转换为透射。同时,在透射区实现了单频吸收(SFATZ),其可通过石墨烯的化学势进行调节。对于由具有不同化学势的单元结构组成的整个结构,可实现吸收区的超宽带吸收和透射窗口(TWAZ),如果能够定制给定的结构参数,则其可在不同频段工作。这些计算结果可应用于频率和角度依赖的反射 - 透射调制、单频和超宽带吸收器以及基于TWAZ的逻辑开关。