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90° bends in low index contrast waveguides

机译:90°弯曲在低索引对比波导

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摘要

We discuss the use of multiple layer air trench and silicon strip structures to realize high efficiency 90°bends for low index contrast waveguides. We use a micro-genetic algorithm (μGA) coupled with a 2-D finite difference time domain method to perform rigorous electromagnetic optimization of multi-layer structures for single mode waveguides. We find that a 3-layer air trench structure can be designed for a 90° waveguide bend that exhibits 97.2% efficiency for TM polarized light at a wavelength of 1.55 μm. We are also able to design five- and six-layer silicon strip bends that have high efficiency for both TE and TM polarizations. For example, simulation results for a six-layer design show 95.2% and 97.2% for TE and TM polarizations, respectively. Moreover, the bend efficiency for each polarization state is greater than 90% over a broad wavelength range (1.5 μm to 1.7 μm).
机译:我们讨论了多层空气沟槽和硅条结构来实现高效率90°弯曲,用于低折射率对比波导。我们使用微遗传算法(μGA)与二维有限差时域方法耦合,以对单模波导的多层结构进行严格的电磁优化。我们发现,可以设计3层的空气沟槽结构,用于90°波导弯曲,其在波长为1.55μm的Tm偏振光下表现出97.2%的效率。我们还能够设计具有高效率的五层和六层硅条弯曲,适用于TE和TM偏振。例如,六层设计的仿真结果分别为TE和TM偏振的95.2%和97.2%。此外,每个偏振态的弯曲效率在宽波长范围内大于90%(1.5μm至1.7μm)。

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