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An efficient beam-propagation method for pulse propagation modelling of photonic crystal MMI devices

机译:一种有效的光束传播方法,用于光子晶体MMI器件的脉冲传播建模

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A finite difference ADIM-based TD-BPM technique with the Pade (1, 1) approximation is investigated and programmed for the purpose of designing and realizing the novel devices based on the photonic crystal multimode interference waveguides. Compared with the conventional numerical method, the present method can achieve the accuracy in the same order but with much coarser mesh sizes, which means the faster in computation speed and less in memory requirements. The propagation properties of a photonic crystal transmission line and two power splitters are successfully simulated, which validates the correctness and effectiveness of our newly-developed programs and shows its promising potentials in the design of the compact and low-loss filters, directional couplers and power dividers in sub-millimeter and Terahertz regimes.
机译:为了设计和实现基于光子晶体多模干涉波导的新型器件,对具有Pade(1,1)近似的基于有限差分ADIM的TD-BPM技术进行了研究和编程。与传统的数值方法相比,本方法可以以相同的顺序实现精度,但是网格尺寸要大得多,这意味着计算速度更快并且内存需求更少。成功地模拟了光子晶体传输线和两个功率分配器的传播特性,这验证了我们新开发程序的正确性和有效性,并显示了其在紧凑型和低损耗滤波器,定向耦合器和功率设计中的潜在潜力亚毫米和太赫兹制的分频器。

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