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Characteristics of Photonic Bandgap Fibres with Hollow Core's Inner Surface Coated by a Layer Material

Characteristics of Photonic Bandgap Fibres with Hollow Core's Inner Surface Coated by a Layer Material
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摘要 Hollow core's inner surface coating in a photonic bandgap fibre (PBCF) is investigated by means of finite element method. The coat material and thickness-dependence dispersion curve and group velocity dispersion are numerically studied. The coating with materials of low index or small thickness will rise up the dispersion curve but will not induce surface modes. However, coating with materials of high index or big coat thickness will induce surface modes and avoided-crossings. By varying coat material's refractive index and thickness, the appearances of surface modes and avoided-crossings can be changed. It is found that the avoided-crossing can enormously enlarge the negative dispersion which can find applications in dispersion compensation. We numerically achieve a negative dispersion as large as -21416.15ps/nm/km. The results give a physical insight into the propagation properties of PBGFs with the hollow core coated by a layer of material and are of crucial significance in the applications of PBGF coating. Hollow core's inner surface coating in a photonic bandgap fibre (PBCF) is investigated by means of finite element method. The coat material and thickness-dependence dispersion curve and group velocity dispersion are numerically studied. The coating with materials of low index or small thickness will rise up the dispersion curve but will not induce surface modes. However, coating with materials of high index or big coat thickness will induce surface modes and avoided-crossings. By varying coat material's refractive index and thickness, the appearances of surface modes and avoided-crossings can be changed. It is found that the avoided-crossing can enormously enlarge the negative dispersion which can find applications in dispersion compensation. We numerically achieve a negative dispersion as large as -21416.15ps/nm/km. The results give a physical insight into the propagation properties of PBGFs with the hollow core coated by a layer of material and are of crucial significance in the applications of PBGF coating.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第1期164-167,共4页 中国物理快报(英文版)
基金 Supported by the National Key Basic Research Programme of China under Grant No 2003CB314906, the National Natural Science Foundation of China under Grant No 10674074, and the Tianjin Natural Science Foundation under Grant No 06YFJZJC00300.
关键词 PULSARS x-ray spectra relativity and gravitation REDSHIFT pulsars, x-ray spectra, relativity and gravitation, redshift
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