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Nonlinearity analysis of 2D materials by using GS-FDTD method

机译:使用GS-FDTD方法对2D材料的非线性分析

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We present a new numerical method to study the linear and nonlinear response of dispersive and nonlinear 2D materials by incorporating a nonlinear generalized source (GS) into the finite-difference time-domain (FDTD) method. This new method is particularly powerful when applied to the analysis of 2D materials, as most such materials cannot be studied directly by traditional FDTD method due to their vanishingly small thickness. A typical graphene grating has been studied to verify the accuracy of the proposed GS-FDTD method, and its predictions agree well with other well-known frequency-domain numerical methods.
机译:我们提出了一种新的数值方法来研究分散和非线性2D材料的线性和非线性响应来通过将非线性广义源(GS)结合到有限差分时域(FDTD)方法中。当应用于2D材料的分析时,这种新方法特别强大,因为由于它们消失的小厚度,大多数此类材料不能直接通过传统的FDTD方法进行研究。研究了典型的石墨烯光栅,以验证所提出的GS-FDTD方法的准确性,其预测与其他众所周知的频域数值方法吻合良好。

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