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A novel polarization splitter based on dual-core hybrid photonic crystal fibers

机译:基于双芯混合光子晶体光纤的新型偏振分束器

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摘要

Highly birefringent dual-core photonic crystal fibers (PCFs) can be used as a polarization splitter because the orthogonal polarization modes with dissimilar coupling lengths are easily separated from each other. Different from the traditional methods achieving high birefringence, a new highly birefringent hybrid PCF that guides light by both index guiding and bandgap guiding is proposed. Firstly, a novel polarization splitter based on this kind of dual-core hybrid PCF is designed. The transmission modes, coupling lengths for the two orthogonal polarizations and performance of the proposed polarization splitter are investigated and numerically analyzed. The results demonstrate that it is possible to obtain a 4.72-mm-long polarization splitter. The splitting ratio is better than -20 dB in a large wavelength range of 1.531.72 μm. Its bandwidth is about 190 nm.
机译:高度双折射的双芯光子晶体光纤(PCF)可以用作偏振分离器,因为耦合长度不同的正交偏振模很容易彼此分离。与实现高双折射的传统方法不同,提出了一种新的高双折射混合PCF,该PCF通过折射率引导和带隙引导两者来引导光。首先,设计了一种基于这种双核混合PCF的新型偏振分离器。研究并数值分析了两种正交偏振的传输模式,耦合长度以及所提出的偏振分离器的性能。结果表明,可以获得4.72mm长的偏振分离器。在1.531.72μm的大波长范围内,分光比优于-20 dB。其带宽约为190 nm。

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