共 23 条
Design of All-Solid Dual-Concentric-Core Microstructure Fiber for Ultra-Broadband Dispersion Compensation
被引:8
作者:
Wang, Chao
[1
]
Zhang, Yajing
[1
]
Wu, Zheng
[1
]
Zhang, Guoxu
[1
]
Zhang, Yiyang
[1
]
Jiang, Linghong
[1
]
机构:
[1] Tangshan Univ, Intelligence & Informat Engn Coll, Tangshan 063000, Peoples R China
来源:
APPLIED SCIENCES-BASEL
|
2019年
/
9卷
/
16期
基金:
美国国家科学基金会;
关键词:
microstructure fiber;
broadband dispersion compensation;
all-solid;
dual-concentric-core;
residual dispersion;
PHOTONIC CRYSTAL FIBER;
LARGE NEGATIVE DISPERSION;
BIREFRINGENCE;
D O I:
10.3390/app9163366
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
In this paper, the all-solid dual-concentric-core microstructure fiber (MSF) with ultra-broadband dispersion compensation characteristics is designed. The effects of microstructure fiber structure parameters on dispersion, phase-matching wavelength, and kappa value are analyzed by the multi-pole method and mode coupling theory. The average dispersion compensation multiple is 18.45, that is, 1 km long dispersion compensated MSF can compensate for the cumulative dispersion of standard single-mode fiber of 18.45 km in the wavelength range of 1385 similar to 1575 nm by optimizing MSF parameters. The change range of residual dispersion is within +/- 0.72 ps/(nm<bold>km</bold>), and the splicing loss with standard single-mode fiber is controlled below 5 dB within the compensation bandwidth of 190 nm. Compared with the air hole-quartz structure dual-concentric-core microstructure fiber, the designed fiber reduces the difficulty of fiber drawing, is easy to splice with standard single-mode fiber, and has wider compensation bandwidth as well as larger compensation multiple than the existing microstructure fiber. This lays a solid foundation for the optimization of dense wavelength division multiplexing networks and the construction of all-optical networks.
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页数:10
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