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Modeling of Magnetically Biased Graphene Coupler at Terahertz Frequency Through an Improved Anisotropic WCIP Method

机译:通过改进的各向异性WCIP方法在太赫兹频率下磁偏置石墨烯耦合器的建模

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摘要

This article presents an improved anisotropic wave concept iterative process (WCIP) algorithm for the analysis of a novel type of tunable graphene-based coupler at the terahertz band for different physical graphene parameters. Through the novel technique of implementation of the anisotropic boundary conditions in the WCIP method, we can integrate the anisotropic surface conductivity matrix into this algorithm without implying a volumetric discretization. Numerical examples are presented to verify the efficiency of the proposed algorithm. The numerical simulation results demonstrate that the performance of the coupler can be controlled by varying the chemical potential and the magnetic field, and a little change was obtained with the variation of the relaxation time and the temperature of graphene.
机译:本文介绍了一种改进的各向异性波概念迭代过程(WCIP)算法,用于分析Terahertz带的新型可调谐石墨烯基耦合器,用于不同的物理石墨烯参数。通过在WCIP方法中的各向异性边界条件的实施新技术,我们可以将各向异性表面电导率矩阵集成到该算法中,而不意味着体积分离子化。提出了数值例子以验证所提出的算法的效率。数值模拟结果表明,通过改变化学电位和磁场可以控制耦合器的性能,并且通过弛豫时间和石墨烯的温度的变化获得了一点变化。

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