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Single- and dual-band convertible terahertz absorber based on bulk Dirac semimetal

机译:基于散装DIRAC半型半球形的单频段和双频可转换太赫兹吸收器

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摘要

A single- and dual-band convertible perfect absorber based on bulk Dirac semimetal (BDS), in which BDS disk array embedded in a dielectric layer deposited on the metal substrate, is proposed. In the use of new materials, we integrate two different modes in a simple structure which not complicatedly patterns the structure of BDS. The simulated results show that the full width at half maximum (FWHM) of mode f(1) and mode f(2) are Delta f = 4 x 10(-2) THz and 2.4 x 10(-2) THz, respectively. And the absorption spectra of our absorber can be well described by the coupled mode theory (CMT). Comprehensive analyses show that, for dual-band absorber, the two absorption peaks can be attributed to the localized cavity resonance and the inter-cell electric resonance, separately. It is interesting to find that double-band absorber can be converted to single-band absorber when the radius of BDS disk is chosen appropriately. Unlike traditional metal-based absorber, absorption frequency of the proposed absorber can be adjusted by varying Fermi energy of BDS from 20 to 50 meV while maintaining high absorption efficiency over 92%. Moreover, the proposed absorber is robust to incident angles from 0 degrees to 60 degrees. Thus, this paper may provide a guideline to investigate single- and dual-band convertible absorber with simple structure based on BDS.
机译:提出了一种基于散装DIAC半型(BDS)的单个和双频可转换完美吸收器,其中提出了嵌入沉积在金属基板上的介电层中的BDS盘阵列。在使用新材料时,我们以一种简单的结构集成了两种不同的模式,这些模式并不复杂地模式BDS的结构。模拟结果表明,模式f(1)和模式f(2)的半峰值(fwhm)处的全宽度分别是ΔF= 4×10(-2)THz和2.4×10(-2)THz。并且可以通过耦合模式理论(CMT)很好地描述我们的吸收器的吸收光谱。综合分析表明,对于双频带吸收,两个吸收峰可以归因于局部腔谐振和细胞间电力共振。 It is interesting to find that double-band absorber can be converted to single-band absorber when the radius of BDS disk is chosen appropriately.与传统的金属基吸收剂不同,所提出的吸收剂的吸收频率可以通过从20至50meV的Fermi能量改变为92%的高吸收效率来调节。此外,所提出的吸收器对从0度到60度的入射角稳健。因此,本文可以提供基于BDS的简单结构来研究单个和双频可转换吸收器的指导。

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