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Novel approach for design of low index contrast multimode interference devices

机译:低折射率对比度多模干扰设备设计的新方法

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Self-imaging theory is widely accepted as a good method in designing multimode interference (MMI) couplers, but it is also true that self-imaging theory is not suitable for low-contrast structures. An improved self-imaging theory is proposed in this paper for the optimal design of low-contrast 1 x N MMI couplers. The average effective width of the MMI waveguide and the average effective propagation constant of the MMI waveguide are used in the improved self-imaging theory. An approach is given to find the average effective width. We use this approach in the optimal design of a 1 x 4 silica MMI coupler, and the results show that the improved self-imaging theory is more accurate than conventional self-imaging theory for low-contrast structures.
机译:自成像理论是设计多模干涉(MMI)耦合器的一种很好的方法,但自成像理论不适用于低对比度结构,这也是事实。针对低对比度1 x N MMI耦合器的最佳设计,本文提出了一种改进的自成像理论。在改进的自成像理论中使用了MMI波导的平均有效宽度和MMI波导的平均有效传播常数。给出了一种寻找平均有效宽度的方法。我们在1 x 4二氧化硅MMI耦合器的优化设计中使用了这种方法,结果表明,针对低对比度结构,改进的自成像理论比常规自成像理论更准确。

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