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Theoretical research on tunable fiber devices in a photonic crystal fiber

机译:光子晶体光纤中可调谐光纤器件的理论研究

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Tunable photonic bandgap fibers (PBGFs) were theoretically investigated by using the vector plane-wave expansion method and the vector finite element method. The tunable PBGFs are fabricated by filling a high-index material in the air holes of index-guiding photonic crystal fibers. The wavelength dependence of leaky loss and group velocity dispersion (GVD) has been illustrated. We show the leaky loss in the tunable PBGFs can strongly depend on the refractive index of filled material due to the photonic bandgap effect. The tunable attenuator which operates at 1550 nm is designed based on this PBGFs.
机译:通过矢量平面波展开法和矢量有限元法,对可调光子带隙光纤(PBGF)进行了理论研究。可调式PBGF是通过将高折射率材料填充到折射率可变的光子晶体光纤的气孔中制成的。已经说明了泄漏损耗与群速度色散(GVD)的波长相关性。我们显示,由于光子带隙效应,可调谐PBGF中的泄漏损耗可能很大程度上取决于填充材料的折射率。基于此PBGF设计了工作于1550 nm的可调衰减器。

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