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Accurate numerical study of electromagnetic wave scattering by a dielectric-covered graphene disk

机译:介电覆盖石墨烯盘对电磁波散射的精确数值研究

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The scattering of the 3D electromagnetic field by a dielectric-covered graphene disk is studied numerically. Mathematical model for such problem is based on the Maxwell equations with two-side generalized boundary conditions (GBC) on the graphene disk. The cover thickness, the dielectric parameters and the graphene electron conductivity (determined from the Kubo formalism) are involved in electrical and magnetic resistivities of GBC as parameters. We demonstrate the resonance behavior of absorbed and radiated powers for the on-axis horizontal magnetic dipole and the horizontal magnetic turnstile source in the presence of the covered graphene disk. It is shown that the resonance frequencies shift with variation of the chemical magnetic potential of the graphene. Far field radiation patterns are plotted in the most intensive resonance for different values of the graphene disk chemical potential.
机译:数值研究了覆盖有电介质的石墨烯盘对3D电磁场的散射。此类问题的数学模型基于石墨烯磁盘上带有两侧广义边界条件(GBC)的麦克斯韦方程组。覆盖层厚度,介电参数和石墨烯电子电导率(由Kubo形式确定)与GBC的电阻率和磁阻有关。我们证明了在存在石墨烯盘的情况下,轴上水平磁偶极子和水平磁旋转栅源的吸收和辐射功率的共振行为。结果表明,共振频率随石墨烯化学势的变化而变化。对于石墨烯盘化学势的不同值,以最强烈的共振绘制了远场辐射图。

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