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Hybrid Square-Lattice Photonic Crystal Fiber with Broadband Single-Mode Operation, High Birefringence, and Normal Dispersion

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Abstract
In this study we propose a new photonic crystal fiber (PCF) design that simultaneously offers broadband single-mode operation, high birefringence, and large normal dispersion in the optical-communication wavelength regime. The waveguide is based on a hybrid square-lattice PCF (HS-PCF) that has circular air holes of two different diameters alternating in the cladding, plus a pure silica defect at the center. The optical properties of the guided modes are analyzed numerically by the finite-element method (FEM) with a perfectly matched layer as the boundary condition. The optimized HS-PCF has a dispersion coefficient of -601.67 Ps nm(-1) km(-1) and a high birefringence of 1.025x10(-2) at 1.55 rim. In addition, over the S+C+L+U wavelength bands the proposed HS-PCF with ultraflat birefringence with a slope on the order of 10(-5).
Author(s)
Kim, SoeunLee, Yong SooLee, Chung GhiuJung, YongminOh, Kyung Hwan
Issued Date
2015-10
Type
Article
DOI
10.3807/JOSK.2015.19.5.449
URI
https://scholar.gist.ac.kr/handle/local/14563
Publisher
Optical Society of Korea
Citation
Journal of the Optical Society of Korea, v.19, no.5, pp.449 - 455
ISSN
1226-4776
Appears in Collections:
Graduate School of AI Policy and Strategy > 1. Journal Articles
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