DocumentCode :
1443875
Title :
Simple Fiber Model for Determination of XPM Effects
Author :
Tao, Zhenning ; Yan, Weizhen ; Liu, Ling ; Li, Lei ; Oda, Shoichiro ; Hoshida, Takeshi ; Rasmussen, Jens C.
Author_Institution :
Fujitsu R & D Center Co., Ltd., Beijing, China
Volume :
29
Issue :
7
fYear :
2011
fDate :
4/1/2011 12:00:00 AM
Firstpage :
974
Lastpage :
986
Abstract :
Previous investigations have revealed that the impairments of the cross-phase modulation (XPM) in dense wavelength-division multiplexing (DWDM) systems include two aspects: the XPM-induced phase noise and the XPM-induced polarization scattering. Such XPM phenomena are strongly dependent on the transmission system configurations and are nonintuitive. In this paper, a simple fiber model is proposed to facilitate the determination of XPM effects. By employing this model, the phase noise and polarization scattering are calculated based on the system configurations and the time-consuming computation by the split step Fourier method is avoided. The proposed model is verified by the dual polarization quadrature phase-shift keying coherent DWDM experiments and simulations in terms of the variance and autocorrelations of phase noise and polarization crosstalk as well as their dependence on relative polarization states and the overall Q-impairment. The proposed model helps deeper analysis of XPM phenomena, and eventually, leads to development of various XPM mitigation methods through transmission system design and coherent receiver DSP.
Keywords :
Fourier transform optics; light coherence; light scattering; optical crosstalk; optical design techniques; optical fibre communication; optical fibre polarisation; optical fibre theory; optical modulation; optical noise; optical receivers; optical transmitters; phase modulation; phase noise; quadrature phase shift keying; wavelength division multiplexing; Q-impairment; XPM-induced phase noise; XPM-induced polarization scattering; coherent receiver DSP; crossphase modulation; dense wavelength-division multiplexing; dual polarization quadrature phase-shift keying coherent DWDM; polarization crosstalk; simple fiber model; split step Fourier method; transmission system design; Analytical models; Crosstalk; Modulation; Optical fiber polarization; Phase noise; Probes; Scattering; Coherent; cross-phase modulation (XPM); dual polarization (DP); quadrature phase-shift keying (QPSK);
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2011.2107728
Filename :
5709960
Link To Document :
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