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8.13 mu m in length and CMOS compatible polarization beam splitter based on an asymmetrical directional coupler

机译:长度为8.13μm,基于非对称定向耦合器的CMOS兼容偏振分束器

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摘要

A compact silicon polarization beam splitter (PBS) is proposed based on an asymmetrical directional coupler consisting of a wide waveguide and a dielectric loaded narrow waveguide. Given that TE and TM polarizations are the dominant mode in the wide and narrow waveguides, respectively, a perfect phase-matching condition in the TM mode but a huge phase mismatching in the TE mode can be achieved. Therefore, the TE mode is almost uncoupled regardless of device length but the TM mode can only completely couple to the cross port at an appropriate coupling length. An ultrashort (similar to 8.13 mu m long) PBS is designed based on a silicon-on-insulator nanowire with a loading refractive index of 2.0 and a gap width of 200 nm. Numerical simulations show that the proposed PBS has a broad bandwidth (similar to 100 nm) with large extinction ratio (>10 dB) and low insertion loss (<0.61 dB). The fabrication-error tolerance of the PBS is also discussed. (C) 2016 Optical Society of America
机译:提出了一种基于不对称定向耦合器的紧凑型硅偏振分束器(PBS),该定向耦合器由宽波导和加载介质的窄波导组成。假设TE和TM极化分别是宽波导和窄波导中的主导模式,则可以实现TM模式下的完美相位匹配条件,但可以实现TE模式下的巨大相位失配。因此,无论器件长度如何,TE模式几乎都不会耦合,而TM模式只能以适当的耦合长度完全耦合到交叉端口。基于绝缘体上硅纳米线设计了超短(类似于8.13微米长)的PBS,其加载折射率为2.0,间隙宽度为200 nm。数值模拟表明,所提出的PBS具有较宽的带宽(约100 nm),消光比大(> 10 dB)和低插入损耗(<0.61 dB)。还讨论了PBS的制造误差容限。 (C)2016美国眼镜学会

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