Band structure of photonic crystal fibers with silica rings in triangular lattice
Data(s) |
2006
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Resumo |
The characteristics of the cladding band structure of air-core photonic crystal fibers with silica rings in triangular lattice are investigated by using a standard plane wave method. The numerical results show that light can be localized in the air core by the photonic band gaps of the fiber. By increasing the air-filling fraction, the band gap edges of the low frequency photonic band gaps shift to shorter wavelength.. whereas the band gap width decreases linearly. In order to make a specified light fall in the low frequency band gaps of the fiber, the interplay of the silica ring spacing and the air-filling fraction is also analyzed. It shows that the silica ring spacing increases monotonously when the air-filling fraction is increased, and the spacing range increases exponentially. This type fiber might have potential in infrared light transmission. (c) 2006 Elsevier B.V. All rights reserved. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Zhou Qln-Ling;Lu Xing-Qiang;Chen Dan-Ping;Zhu Cong-Shan;邱建荣.,Opt. Commun.,2006,267(1):98-101 |
Palavras-Chave | #光学材料;晶体 #photonic crystal fiber #photonic band structure #silica ring |
Tipo |
期刊论文 |