Photonic Bandgap Properties of Photonic Crystal Fibers with the Triangular Nonair-Silica Structures
Zhao Yuan Song, Xiaodong Liu, Jing Niu
Abstract
Zhao Yuan Song, Xiaodong Liu, Jing Niu
Abstract
The study on the photonic crystal fibers becomes a new research field of fiber optics in recent years, and the bandgap properties of the photonic crystal fibers are the main different points different from those of the general optical fibers. This paper performs the analysis on the bandgap properties of the photonic crystal fibers with the triangular nonair-silica structures by use of the full-vector plane-wave expansion method, focusing on the effect of the dielectric materials filled in the holes on the existence of photonic bandgaps.
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The study on the photonic crystal fibers becomes a new research field of fiber optics in recent years, and the bandgap properties of the photonic crystal fibers are the main different points different from those of the general optical fibers. This paper performs the analysis on the bandgap properties of the photonic crystal fibers with the triangular nonair-silica structures by use of the full-vector plane-wave expansion method, focusing on the effect of the dielectric materials filled in the holes on the existence of photonic bandgaps.
Key concepts: Photonic crystal, Materials science, Plane wave expansion method, Photonic-crystal fiber, Photonic bandgap, Yablonovite, Plane wave expansion, Band gap