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用于高速长距离密集波分复用传输的色散优化光纤。

Dispersion-optimized optical fiber for high-speed long-haul dense wavelength division multiplexing transmission.

作者信息

Wu Jindong, Chen Liuhua, Li Qingguo, Wu Wenwen, Sun Keyuan, Wu Xingkun

机构信息

State Key Laboratory of Modern Optical Instruments, Zhejiang University, Hangzhou 3100272, China.

出版信息

Appl Opt. 2011 Jul 10;50(20):3538-46. doi: 10.1364/AO.50.003538.

Abstract

Four non-zero-dispersion-shifted fibers with almost the same large effective area (A(eff)) and optimized dispersion properties are realized by novel index profile designing and modified vapor axial deposition and modified chemical vapor deposition processes. An A(eff) of greater than 71 μm(2) is obtained for the designed fibers. Three of the developed fibers with positive dispersion are improved by reducing the 1550 nm dispersion slope from 0.072 ps/nm(2)/km to 0.063 ps/nm(2)/km or 0.05 ps/nm(2)/km, increasing the 1550 nm dispersion from 4.972 ps/nm/km to 5.679 ps/nm/km or 7.776 ps/nm/km, and shifting the zero-dispersion wavelength from 1500 nm to 1450 nm. One of these fibers is in good agreement with G655D and G.656 fibers simultaneously, and another one with G655E and G.656 fibers; both fibers are beneficial to high-bit long-haul dense wavelength division multiplexing systems over S-, C-, and L-bands. The fourth developed fiber with negative dispersion is also improved by reducing the 1550 nm dispersion slope from 0.12 ps/nm(2)/km to 0.085 ps/nm(2)/km, increasing the 1550 nm dispersion from -4 ps/nm/km to -6.016 ps/nm/km, providing facilities for a submarine transmission system. Experimental measurements indicate that the developed fibers all have excellent optical transmission and good macrobending and splice performances.

摘要

通过新颖的折射率分布设计以及改进的气相轴向沉积和改进的化学气相沉积工艺,实现了四根具有几乎相同的大有效面积(A(eff))和优化色散特性的非零色散位移光纤。对于所设计的光纤,获得了大于71μm²的有效面积。所研制的三根正色散光纤通过将1550nm色散斜率从0.072ps/nm²/km降低到0.063ps/nm²/km或0.05ps/nm²/km,将1550nm色散从4.972ps/nm/km增加到5.679ps/nm/km或7.776ps/nm/km,并将零色散波长从1500nm移至1450nm而得到了改进。其中一根光纤同时与G655D和G.656光纤非常匹配,另一根与G655E和G.656光纤匹配;这两根光纤均有利于S、C和L波段的高比特率长距离密集波分复用系统。所研制的第四根负色散光纤也通过将1550nm色散斜率从0.12ps/nm²/km降低到0.085ps/nm²/km,将1550nm色散从-4ps/nm/km增加到-6.016ps/nm/km而得到改进,为海底传输系统提供了便利。实验测量表明,所研制的光纤均具有出色的光传输性能以及良好的松套弯曲和熔接性能。

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