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A Polarization Filter Based on a Novel Photonic Crystal Fiber with a Gold-Coated Air Hole by Using Surface Plasmon Resonance

机译:基于新型光子晶体纤维的偏振滤波器通过使用表面等离子体共振通过镀金气孔

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摘要

A novel design of a polarization filter based on photonic crystal fiber (PCF) is proposed in this paper. With the introduction of a gold-coated air hole, the resonance strength is much stronger in y-polarized direction than in x-polarized direction at some particular wavelengths, which is due to the metal surface plasmon effects. At the wavelength of 1.31 mu m, the loss of y-polarized mode is 2138.34 dB/cm while the loss is very low in x polarization. Furthermore, the loss peak can be flexibly adjusted from the wavelength of 1.26 to 1.56 mu m by changing the thickness of a gold layer, and the loss in y polarization can be kept above 1200 dB/cm. The significant loss in y polarization makes this PCF a good candidate for developing a polarization filter with high performance.
机译:本文提出了一种基于光子晶体纤维(PCF)的偏振滤波器的新颖设计。 随着镀金空气孔的引入,谐振强度在Y偏振方向上比某些特定波长的X偏振方向更强,这是由于金属表面等离子体效应。 在1.31μm的波长下,Y偏振模式的损失是2138.34dB / cm,而损耗在X极化中非常低。 此外,通过改变金层的厚度,可以从波长为1.26至1.56μm的波长,并且y偏振的损耗可以保持在1200db / cm以上的损耗峰值。 Y极化的显着损耗使得该PCF成为开发具有高性能的偏振滤波器的良好候选者。

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