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Marching-on-in-Degree Time-Domain Integral Equation Solver for Transient Electromagnetic Analysis of Graphene

机译:石墨烯瞬态电磁分析的按时进军时域积分方程求解器

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摘要

The marching-on-in-degree (MOD) time-domain integral equation (TDIE) solver for the transient electromagnetic scattering of the graphene is presented in this paper. Graphene’s dispersive surface impedance is approximated using rational function expressions of complex conjugate pole-residue pairs with the vector fitting (VF) method. Enforcing the surface impedance boundary condition, TDIE is established and solved in the MOD scheme, where the temporal surface impedance is carefully convoluted with the current. Unconditionally stable transient solution in time domain can be ensured. Wide frequency band information is obtained after the Fourier transform of the time domain solution. Numerical results validate the proposed method.
机译:提出了一种用于石墨烯瞬态电磁散射的阶跃进阶时域积分方程(TDIE)求解器。石墨烯的色散表面阻抗是通过矢量拟合(VF)方法使用复共轭极残基对的有理函数表达式来估算的。强制表面阻抗边界条件,在MOD方案中建立并求解了TDIE,在该方案中,临时表面阻抗与电流进行了卷积。可以确保在时域内无条件稳定的瞬态解。在时域解的傅立叶变换之后获得宽带信息。数值结果验证了该方法的有效性。

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