DocumentCode :
1754814
Title :
Degree of Coherence in Space-Division Multiplexed Transmission
Author :
Mecozzi, Antonio ; Antonelli, C.
Author_Institution :
Dept. of Phys. & Chem. Sci., Univ. of L´Aquila, L´Aquila, Italy
Volume :
32
Issue :
1
fYear :
2014
fDate :
Jan.1, 2014
Firstpage :
63
Lastpage :
69
Abstract :
We generalize the concept of degree of polarization of single-mode fields to multi-mode fields by introducing a new parameter that we define degree of mutual coherence. The new definition enables characterizing by a single parameter the quality of the signal corrupted by various linear and nonlinear impairments at the output of an optical transmission system employing spatial division multiplexing. We propose two workable schemes based on standard optics to measure the degree of coherence, one valid for generic fields, another applying only to CW fields affected by ASE noise. We apply the notion of degree of mutual coherence to the characterization of the nonlinear mode coupling caused by two-pulse collisions in spatially multiplexed WDM systems. We show that a collision between pulses transmitted in different WDM channels produces nonlinear power transfer between degenerate spatial modes belonging to the same channel. Finally, we quantify the effect of multiple collisions in terms of reduction of the degree of mutual coherence under the assumption that uncorrelated messages are transmitted over different WDM channels.
Keywords :
light coherence; optical communication; optical fibre dispersion; optical noise; space division multiplexing; superradiance; wavelength division multiplexing; ASE noise; multimode fields; mutual coherence; nonlinear mode coupling; nonlinear power transfer; optical transmission system; single-mode fields; space division multiplexed transmission; spatial division multiplexing; spatially multiplexed WDM systems; two-pulse collisions; Coherence; Equations; Noise; Stokes parameters; Vectors; Wavelength division multiplexing; Coherence; fiber nonlinear optics; optical communication; optical fibers; spatial division multiplexing;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2290000
Filename :
6661332
Link To Document :
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