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Effect of single point defects on the confinement losses of air-guiding photonic bandgap fibers

Effect of single point defects on the confinement losses of air-guiding photonic bandgap fibers
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摘要 The confinement losses in air-guiding photonic bandgap fibers (PBGFs) with air hole missing are studied with the full-vector finite-element method. It is confirmed that there are two loss peaks (1.555 and 1.598 μm) if there is a hole missing in the cladding far from the core. The closer to the core the hole missing is, the larger the confinement losses are, and even no mode could propagate in the core. The main power of the fundamental mode leaks from the core to the cladding defect. The quality of PBGFs can be improved through controlling the number and position of defects. The confinement losses in air-guiding photonic bandgap fibers (PBGFs) with air hole missing are studied with the full-vector finite-element method. It is confirmed that there are two loss peaks (1.555 and 1.598 μm) if there is a hole missing in the cladding far from the core. The closer to the core the hole missing is, the larger the confinement losses are, and even no mode could propagate in the core. The main power of the fundamental mode leaks from the core to the cladding defect. The quality of PBGFs can be improved through controlling the number and position of defects.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第7期343-346,共4页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No. 61077084)
关键词 photonic bandgap fiber photonic bandgap (PBG) defect node confinement loss photonic bandgap fiber, photonic bandgap (PBG), defect node, confinement loss
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参考文献8

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