2009•Optical Fiber & Electric Cable and Their ApplicationsRequires access

The Effect of Structure Parameter on Band Gap of Hollow-Core PCF

Yin‐Kai Chao

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Abstract

Using the full-vector plane-wave method the effects of the structure parameters of the triangular lattice photonic crystal fiber(PCF) on the photonic band gap are analyzed,which include hole diameter d,pitch Λ,air filling fraction F,dielectric constant,etc..Through simulation calculation it is found that the photonic band gap increases with the increasing of d,F,and dielectric constant as well as the decreasing of Λ.Finally how to realize relatively large band gap by using appropriate parameter configuration is described and the band gap distribution map under these design parameters is simulated.

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What this paper is about

Using the full-vector plane-wave method the effects of the structure parameters of the triangular lattice photonic crystal fiber(PCF) on the photonic band gap are analyzed,which include hole diameter d,pitch Λ,air filling fraction F,dielectric constant,etc..Through simulation calculation it is found that the photonic band gap increases with the increasing of d,F,and dielectric constant as well as the decreasing of Λ.Finally how to realize relatively large band gap by using appropriate parameter configuration is described and the band gap distribution map under these design parameters is simulated.

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Available abstract

Using the full-vector plane-wave method the effects of the structure parameters of the triangular lattice photonic crystal fiber(PCF) on the photonic band gap are analyzed,which include hole diameter d,pitch Λ,air filling fraction F,dielectric constant,etc..Through simulation calculation it is found that the photonic band gap increases with the increasing of d,F,and dielectric constant as well as the decreasing of Λ.Finally how to realize relatively large band gap by using appropriate parameter configuration is described and the band gap distribution map under these design parameters is simulated.

Key concepts: Photonic crystal, Band gap, Dielectric, Lattice constant, Core (optical fiber), Materials science, Photonic-crystal fiber, Optics

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