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Generalized finite-difference time-domain method utilizing auxiliary differential equations for the full-vectorial analysis of photonic crystal fibers

机译:利用辅助微分方程的广义有限差分时域方法进行光子晶体光纤的全矢量分析

摘要

We present the generalized finite-difference time-domain full-vectorial method by reformulating the time-dependent Maxwell's curl equations with electric flux density and magnetic field intensity, with auxiliary differential equations using complex-conjugate pole-residue pairs. The model is generic and robust to treat general frequency-dependent material and nonlinear material. The Sellmeier equation is implicitly incorporated as a special case of the general formulation to account for material dispersion of fused silica. The results are in good agreement with the results from the multipole method. Kerr nonlinearity is also incorporated in the model and demonstrated. Nonlinear solutions are provided for a one ring photonic crystal fiber as an example.
机译:通过用电通量密度和磁场强度重新构造与时间相关的麦克斯韦卷曲方程,以及使用复共轭极点-残渣对的辅助微分方程,我们提出了广义有限差分时域全矢量方法。该模型具有通用性和鲁棒性,可以处理一般的频率相关材料和非线性材料。作为通用配方的特殊情况,Sellmeier方程被隐式合并,以说明熔融二氧化硅的材料分散性。结果与多极方法的结果非常吻合。 Kerr非线性也被纳入模型并得到证明。作为示例,提供了针对一环光子晶体光纤的非线性解决方案。

著录项

  • 作者

    Hu JJ; Shum P; Lu C; Ren G;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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