Title :
Ultra-flattened chromatic dispersion photonic crystal fiber with high nonlinearity for supercontinuum generation
Author :
Wang, Yamiao ; Zhang, Xia ; Ren, Xiaomin ; Zheng, Long ; Liu, Xiaolong ; Huang, Yongqing
Author_Institution :
Key Laboratory of Information Photonics and Optical Communications (BUPT), Ministry of Education; Institute of Optical Communications and Optoelectronics, Beijing University of Posts and Telecommunications, P.O. Box 66 (Room 741), 100876, China
Abstract :
We propose a novel design for photonic crystal fiber, which has flattened-dispersion, high nonlinear coefficient and low confinement loss for supercontinuum generation. The proposed fiber needs appropriate number of design parameters. Results show that eight-ringed photonic crystal fiber is obtained with nonlinear coefficient greater than 33W−1km−1, and small dispersion slope 2.00×10−3ps/nm2/km in the telecommunication window. Ultra flattened dispersion of −1.65∼−0.335 ps/nm/km and confinement loss in super low order of 10−4dB/km are simultaneously obtained ranging from 1.45µm to 1.65µm. It´s shown that through numerical analysis the novel micro-structured optical fiber with small normal group-velocity dispersion and nearly zero dispersion slope offers the possibility of efficient supercontinuum generation in the telecommunication window using a few ps pulse. supercontinuum with 70nm-bandwidth at 1550nm is achieved through only 150m-long fiber.
Keywords :
Chromatic dispersion; Fiber nonlinear optics; Optical fiber communication; Optical fiber dispersion; Optical fiber losses; Optical fiber polarization; Optical pulse generation; Optical wavelength conversion; Photonic crystal fibers; Supercontinuum generation; confinement loss; flattened-dispersion; high nonlinearity; photonic crystal fiber; supercontinuum;
Conference_Titel :
Communications and Photonics Conference and Exhibition (ACP), 2009 Asia
Conference_Location :
Shanghai, China
Print_ISBN :
978-1-55752-877-3
Electronic_ISBN :
978-1-55752-877-3