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Polarization Effects and Resonance Absorption in Terahertz Wave Diffraction on Graphene Metasurfaces

机译:石墨烯元核衍射偏振效应和谐振吸收

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A task on the electromagnetic wave diffraction on graphene metasurfacesthe 2D periodic lattices of rectangular graphene nanoribbons placed on substrates with dielectric and graphene layersis solved using three electromagnetic methods. The coefficients of transmission through THz polarizers based on graphene metasurfaces are studied as a function of frequency with the orientation angles of incident TEM wave vectors varying relative to the graphene nanoribbons for various values of the chemical potential. It is shown that graphene metasurfaces on multilayer substrates at surface plasmon polariton resonant frequencies are electrically tunable absorbers of almost 100% incident energy in the THz frequency range.
机译:用三种电磁方法施加在基板上的矩形石墨烯纳米纤维的矩形石墨烯纳米波动矩阵的电磁波衍射的任务。 通过基于石墨烯元措施的THz偏振器的传输系数作为频率的函数,其具有相对于石墨烯纳米的入射TEM波矢量的取向角度,用于各种化学势值。 结果表明,在表面等离子体谐振频率下的多层基板上的石墨烯元件是在THz频率范围内的电动可调谐吸收器,其入射能量几乎为100%。

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