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Dual-Polarization, Tunable Breaking Window in the Polarization Conversion Pass Band in a Terahertz Dirac Semimetal-Based Metamaterial

机译:太赫兹狄拉克半金属基超材料的极化转换通带中的双极化,可调破碎窗口

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摘要

We propose a planar THz hybrid bulk Dirac semimetal (BDS)-metal metamaterial which consists of a hybrid BDS-metal array on a dielectric layer and a back metallic mirror. The simulation results show that a spectral window that possesses high reflectance with no polarization conversion effect arises in the polarization conversion pass band due to the existence of the BDS rods. Interestingly, though the proposed structure possesses no symmetry property, the effects are nearly the same for x- and y-polarization incidences. We analyze the electric field distributions at the breaking frequency and attribute the phenomena to plasmonic analogue of electromagnetically induced reflectance (EIR-like) effect for x-polarization incidence and direct back scattering for y-polarization incidence. The dependence of the breaking window on the BDS rod length shows that, for both x- and y-polarization incidences, the breaking characteristic is mainly determined by the dipole resonance on the BDS rod. Moreover, the breaking window can be independently and dynamically manipulated by changing the Fermi energy of the BDS rods. Our results may provide potential applications in designing new polarization control devices.
机译:我们提出了一种平面THz杂散狄拉克半金属(BDS)-金属超材料,它由介电层上的杂化BDS-金属阵列和背面金属镜组成。仿真结果表明,由于BDS棒的存在,在偏振转换通带中出现了具有高反射率而没有偏振转换效应的光谱窗口。有趣的是,尽管所提出的结构不具有对称性,但对于x极化和y极化入射,其影响几乎相同。我们分析了断裂频率处的电场分布,并将该现象归因于x极化入射的电磁感应反射(类EIR)效应和y极化入射的直接反向散射的等离子体模拟。断裂窗口对BDS杆长度的依赖性表明,对于x和y极化入射,断裂特性主要由BDS杆上的偶极共振决定。此外,可以通过更改BDS杆的费米能量来独立,动态地控制破碎窗口。我们的结果可能为设计新的偏振控制设备提供潜在的应用。

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