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An Optical Mode-Matching Method With Improved Accuracy and Efficiency

机译:具有提高的精度和效率的光学模式匹配方法

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摘要

Two fundamental principles of the mode-matching method-mode orthogonality and tangential field continuity conditions have been revisited in depth. With a finite number of modes employed in the conventional method, the tangential field continuity condition at the waveguide-discontinuity interface fails leading to a field mismatch error. We propose an alternate, superior mode-matching method implemented by reconstruction of the auxiliary coefficient matrix, rather than by applying the abovementioned continuity and orthogonality. Detailed transfer-matrix equations have been derived for the finite-mode-number case. We showed that the improved mode-matching method yields a smaller field mismatch error under equal computational effort. Examples of bent and faceted waveguide structure have been investigated and the numerical simulation results demonstrated that the newly proposed method has the merits of simple implementation, high accuracy, and high computational efficiency for application in high-index-contrast photonic integrated circuits.
机译:深入讨论了模式匹配方法的两个基本原理-模式正交性和切向场连续性条件。在常规方法中采用有限数量的模式时,波导不连续界面处的切向场连续性条件将失败,从而导致场失配误差。我们提出了一种替代的高级模式匹配方法,该方法通过重建辅助系数矩阵而不是通过应用上述连续性和正交性来实现。对于有限模数情况,已经导出了详细的传递矩阵方程式。我们表明,改进的模式匹配方法在相同的计算量下产生了较小的场失配误差。研究了弯曲和刻面波导结构的实例,数值仿真结果表明,该方法具有实现简单,精度高,计算效率高等优点,可用于高折射率对比度的光子集成电路中。

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