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Ultrabroadband polarization splitter based on three-core photonic crystal fiber with a modulation core

机译:基于带调制芯的三芯光子晶体光纤的超宽带偏振分束器

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摘要

We design an ultrabroadband polarization splitter based on three-core photonic crystal fiber (PCF). A modulation core and two fluorine-doped cores are introduced to achieve an ultrawide bandwidth. The properties of three-core PCF are modeled by using the full-vector finite element method along with the full-vector beam propagation method. Numerical results demonstrate that an ultrabroadband splitter with 320 nm bandwidth with an extinction ratio as low as -20 dB can be achieved by using 52.8 mm long three-core PCF. This splitter also has high compatibility with standard single-mode fibers as the input and output ports due to low splicing loss of 0.02 dB. All the air holes in the proposed structure are circular holes and arranged in a triangular lattice that makes it easy to fabricate. (C) 2016 Optical Society of America
机译:我们设计了一种基于三芯光子晶体光纤(PCF)的超宽带偏振分束器。引入了调制核心和两个氟掺杂核心,以实现超宽带宽。通过使用全矢量有限元方法和全矢量光束传播方法对三核PCF的属性进行建模。数值结果表明,使用52.8 mm长的三芯PCF可以实现具有320 nm带宽,消光比低至-20 dB的超宽带分离器。该分路器还具有0.02 dB的低熔接损耗,因此与作为输入和输出端口的标准单模光纤具有高度的兼容性。所提出的结构中的所有气孔均为圆形孔,并排列成易于制造的三角形格子。 (C)2016美国眼镜学会

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