Cite this article:
Yuan Jin-Hui, Sang Xin-Zhu, Yu Chong-Xiu, Xin Xiang-Jun, Zhang Jin-Long, Zhou Gui-Yao, Li Shu-Guang, Hou Lan-Tian. Theoretical investigation of band-gap and mode characteristics of anti-resonance guiding photonic crystal fibresJ. Chin. Phys. B, 2011, 20(2): 024213.
| Yuan Jin-Hui, Sang Xin-Zhu, Yu Chong-Xiu, Xin Xiang-Jun, Zhang Jin-Long, Zhou Gui-Yao, Li Shu-Guang, Hou Lan-Tian. Theoretical investigation of band-gap and mode characteristics of anti-resonance guiding photonic crystal fibresJ. Chin. Phys. B, 2011, 20(2): 024213. |
Theoretical investigation of band-gap and mode characteristics of anti-resonance guiding photonic crystal fibres
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Abstract
With the full-vector plane-wave method (FVPWM) and the full-vector beam propagation method (FVBPM), the dependences of the band-gap and mode characteristics on material index and cladding structure parameter in anti-resonance guiding photonic crystal fibres (ARGPCFs) are sufficiently analysed. An ARGPCF operating in the near-infrared wavelength is shown. The influences of the high index cylinders, glass interstitial apexes and silica structure on the characteristics of band-gaps and modes are deeply investigated. The equivalent planar waveguide theory is used for analysing such an ARGPCF filled by the isotropic materials, and the resonance and the anti-resonance characteristics can be well predicted. -
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