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Electronically Tunable Broadband THz Frequency Multipliers Based on Multilayer Nonlinear Graphene Metasurfaces

机译:基于多层非线性石墨烯超表面的电子可调宽带太赫兹倍频器

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A numerical method for modeling of nonlinear effects in the multilayer metasurfaces of rectangular graphene nanoribbons was developed based on the solution of nonlinear diffraction problem for Maxwell's equations, complemented by the model of the nonlinear graphene surface conductivity. The numerical analysis taking into account the third order conductivity of graphene in the presence of high intensity THz field shows an efficient frequency multiplication mechanism in the condition of resonance of the surface plasmon-polariton waves and standing waves due to reflection from dielectric separation layers and graphene ribbon arrays. The normalized power of third-harmonic wave, emitted in the forward (transmission) and the backward (reflection) directions by multilayer graphene nanoribbons metasurfaces as a function of frequency of the incident waves of s- and p-polarization were calculated. It is shown, how the efficiency of third harmonic generation at the resonant frequency depends on the structural parameters of THz frequency multipliers such as the periodicity of arrays, geometrical sizes of graphene nanoribbons, the thickness of dielectric layers and the change in its dielectric permeability, the variation in the graphene chemical potential.
机译:基于非线性衍射问题的麦克斯韦方程的溶液,开发了一种基于麦克斯韦方程的非线性衍射问题的多层元坯料建模的数值方法,由非线性石墨烯表面电导率的模型互补。考虑到高强度THz场的存在下石墨烯的第三阶电导率的数值分析示出了由于介电分离层和石墨烯的反射而导致的表面等离子体 - 极性振荡和驻波的谐振条件下的有效频率乘法机制带阵列。计算在向前(传输)和向后(反射)方向上发射的三谐波的归一化功率由多层石墨烯纳米纳米元件作为S-和P偏振的入射波的频率函数的函数。示出了,在谐振频率下的三次谐波产生的效率如何取决于THz频率乘数的结构参数,例如阵列的周期性,石墨烯纳米的几何尺寸,介电层的厚度和其介电渗透率的变化,石墨烯化学势的变化。

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