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Ultracompact photonic crystal polarization beam splitter based on multimode interference

机译:基于多模干涉的超紧凑光子晶体偏振分束器

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摘要

We propose a theoretical design for a compact photonic crystal (PC) polarization beam splitter (PBS) based on the multimode interference (MMI) effect. The size of a conventional MMI device designed by the self-imaging principle is not compact enough; therefore, we design a compact PC PBS based on the difference of the interference effect between TE and TM modes. Within the MMI coupler, the dependence of interference of modes on propagation distance is weak for a TE wave and strong for a TM wave; as a result, the length of the MMI section can be only seven lattice constants. Simulation results show that the insertion losses are 0.32 and 0.89 dB, and the extinction ratios are 14.4 and 17.5 dB for Port 1 (TE mode) and Port 2 (TM mode), respectively.
机译:我们提出了一种基于多模干涉(MMI)效应的紧凑型光子晶体(PC)偏振分束器(PBS)的理论设计。通过自成像原理设计的常规MMI设备的尺寸不够紧凑。因此,我们根据TE和TM模式之间干扰效应的差异设计了紧凑型PC PBS。在MMI耦合器中,模式波对传播距离的依赖性对于TE波是弱的,而对于TM波则强。结果,MMI部分的长度只能是七个晶格常数。仿真结果表明,端口1(TE模式)和端口2(TM模式)的插入损耗分别为0.32和0.89 dB,消光比分别为14.4和17.5 dB。

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