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Dual-Tunable Broadband Terahertz Absorber Based on a Hybrid Graphene-Dirac Semimetal Structure

机译:基于杂交石墨烯 - DIRAC半型结构的双调谐宽带太赫兹吸收器

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摘要

A dual-controlled tunable broadband terahertz absorber based on a hybrid graphene-Dirac semimetal structure is designed and studied. Owing to the flexible tunability of the surface conductivity of graphene and relative permittivity of Dirac semimetal, the absorption bandwidth can be tuned independently or jointly by shifting the Fermi energy through chemical doping or applying gate voltage. Under normal incidence, the device exhibits a high absorption larger than 90% over a broad range of 4.06–10.7 THz for both TE and TM polarizations. Moreover, the absorber is insensitive to incident angles, yielding a high absorption over 90% at a large incident angle of 60° and 70° for TE and TM modes, respectively. The structure shows great potential in miniaturized ultra-broadband terahertz absorbers and related applications.
机译:设计和研究了基于混合石墨烯-DIRAC半型结构的双控可调宽带太赫兹吸收器。由于石墨烯表面导电性的柔性可调性和Dirac半型的相对介电常数,通过通过化学掺杂或施加栅极电压将FERMI能量移位,可以独立地或共同调谐吸收带宽。在正常发病率下,该装置在宽范围为4.06-10.7至7至TM和TM偏振上表现出大于90%的高吸收。此外,吸收器分别对入射角的不敏感,分别以60°和70°的大,在TE和TM模式下产生超过90%的高吸收。该结构在小型化超宽带太赫兹吸收器和相关应用中显示出巨大的潜力。

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