DocumentCode
1427441
Title
A 40-Gb/s/ch WDM transmission with SPM/XPM suppression through prechirping and dispersion management
Author
Sano, Akihide ; Miyamoto, Yutaka ; Kuwahara, Shoichiro ; Toba, Hiromu
Author_Institution
NTT Network Service Syst. Lab., Tokyo, Japan
Volume
18
Issue
11
fYear
2000
Firstpage
1519
Lastpage
1527
Abstract
This paper proposes to combine prechirping with dispersion management scheme in such a way as to suppress the power penalty induced by self-phase modulation (SPM) and cross-phase modulation (XPM) in 40-Gb/s per channel wavelength-division multiplexed (WDM) transmission systems with long-amplifier spacing. First, we show that the optimum total dispersion to minimize SPM depends on prechirping and the local dispersion of the transmission fiber, unlike that for minimizing XPM. Next, it is shown that, by optimizing the combination of prechirping and local dispersion, these two optima can be made to match so as to improve the allowable maximum fiber input power. Finally, the operation of the proposed optimization scheme is confirmed experimentally, and 4/spl times/40-Gb/s WDM transmission over 400 km of nonzero dispersion-shifted fiber (NZDSF) is demonstrated successfully with the fiber input power of +10 dBm/ch and 250 GHz channel spacing.
Keywords
chirp modulation; optical fibre dispersion; optimisation; self-phase modulation; telecommunication channels; telecommunication network management; wavelength division multiplexing; 160 Gbit/s; 40 Gbit/s; 400 km; GHz channel spacing; Gb/s WDM transmission; SPM/XPM suppression; WDM transmission; WDM transmission systems; cross-phase modulation; dispersion management; fiber input power; local dispersion; long-amplifier spacing; maximum fiber input power; nonzero dispersion-shifted fiber; optimization scheme; optimum total dispersion; power penalty; prechirping; self-phase modulation; transmission fiber; wavelength-division multiplexed; Energy management; Erbium-doped fiber amplifier; Laboratories; Optical fiber dispersion; Power system management; Scanning probe microscopy; Stimulated emission; Technological innovation; Time division multiplexing; Wavelength division multiplexing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.896212
Filename
896212
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