A design of double cladding dispersion flattened photonic crystal fiber (DF-PCF) is proposed. To employ traditional stack and draw technology, the cladding of the DF-PCF is consisted of triangular periodic airholes with the same hole to hole pitch. Simulation results show that the small air-holes in
โฆ LIBER โฆ
Dispersion Compensation Over All the Telecommunication Bands With Double-Cladding Photonic-Crystal Fiber
โ Scribed by Matsui, T.; Nakajima, K.; Sankawa, I.
- Book ID
- 115372165
- Publisher
- Optical Society of America
- Year
- 2007
- Tongue
- English
- Weight
- 385 KB
- Volume
- 25
- Category
- Article
- ISSN
- 0733-8724
No coin nor oath required. For personal study only.
๐ SIMILAR VOLUMES
Design of double cladding dispersion fla
โ
Wang Wei; Hou Lan-Tian; Song Jun-Jie; Zhou Gui-Yao
๐
Article
๐
2009
๐
Elsevier Science
๐
English
โ 607 KB
Applicability of Photonic Crystal Fiber
โ
Matsui, T.; Nakajima, K.; Fukai, C.
๐
Article
๐
2009
๐
Optical Society of America
๐
English
โ 578 KB
Numerical investigation and optimization
โ
S.K. Varshney; N.J. Florous; K. Saitoh; M. Koshiba; T. Fujisawa
๐
Article
๐
2007
๐
Elsevier Science
๐
English
โ 289 KB
In this paper, we numerically investigate and optimize the profile of a photonic crystal fiber (PCF) that can eliminate the residual dispersion from the telecom link as well as can provide identical dispersion compensation over S + C + L bands. A full-vectorial finite element method combined with ge