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Study on compact polarization beam splitters based on directional coupling in Bragg reflection waveguides

机译:布拉格反射波导中基于定向耦合的紧凑型偏振分束器的研究

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Directional coupling in dual-channel Bragg reflection waveguides are investigated through plane-wave expansion and finite difference time-domain methods. A polarization beam splitter based on directional coupling in Bragg reflection waveguides is proposed, and its transmission characteristics are investigated by using the finite different time-domain method. Calculated results indicate that, for the polarization beam splitter with the coupling length of 59.76 mu m, TM0 and TE0 modes at a wavelength of 1.55 mu m can be spatially separated, and the corresponding transmittances are 91.72% and 97.97%, respectively. The compact polarization beam splitter is expected to be applied to high density photonic integrated circuits. (C) 2015 Optical Society of America
机译:通过平面波扩展和时域有限差分方法研究了双通道布拉格反射波导的定向耦合。提出了一种基于布拉格反射波导中定向耦合的偏振分束器,并采用时域有限差分法研究了其传输特性。计算结果表明,对于耦合长度为59.76μm的偏振分束器,在波长为1.55μm处的TM0和TE0模式可以在空间上分离,相应的透射率分别为91.72%和97.97%。紧凑型偏振分束器有望应用于高密度光子集成电路。 (C)2015年美国眼镜学会

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