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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Highly efficient full-vectorial integral equation solution for the bound, leaky, and complex modes of dielectric waveguides
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Highly efficient full-vectorial integral equation solution for the bound, leaky, and complex modes of dielectric waveguides

机译:高效的全矢量整体方程解决方案,用于介电波导的粘定,漏,和复杂模式

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A full-vectorial contour integral equation analysis of the natural modes of dielectric waveguides (DW) of arbitrary cross section is presented. The Galerkin method, together with the Analytical Regularization procedure, is applied to discretizing and solving the eigenvalue problem. This ensures the fast convergence and superior accuracy of the numerical algorithms. The waveguide cross section is characterized by a parametrical curve defining its contour, with a limited curvature at each point. This avoids the singularity points at corner regions and provides accurate results, even for waveguides with virtually sharp corners. Both fundamental and higher order mode propagation characteristics are studied in the bound, leaky, and complex regimes. Numerical results consistent with other theories and experimental data are presented for a wide range of practical dielectric waveguides that demonstrate the efficiency, accuracy, and versatility of the method developed. Finally, the technique is applied to model a fused fiber coupler.
机译:提出了任意横截面的介电波导(DW)的自然模式的全矢量轮廓整体方程分析。 Galerkin方法与分析正则化程序一起应用于离散化和解决特征值问题。这确保了数值算法的快速收敛性和卓越的准确性。波导横截面的特征在于,参数曲线限定其轮廓,每个点处具有有限的曲率。这避免了拐角区域的奇点点,即使对于具有几乎尖角的波导,也能提供准确的结果。在绑定,泄漏和复杂的制度中研究了基本和更高阶模式传播特性。对于其他理论和实验数据一致的数值结果是针对各种实用介电波导提供的,其证明了所开发的方法的效率,准确性和多功能性。最后,应用该技术以模拟熔融光纤耦合器。

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