article
Random walk of coherently amplified solitons in optical fiber transmission
Optics Letters · 1986 · Vol. 11(10) · pp. 665–665
J. P. Gordon✉(AT&T (United States))H. A. Haus(Massachusetts Institute of Technology)
Abstract
In an optical-communications system using soliton pulse transmission, periodic amplification is needed to maintain the energy of the solitons. We show that amplifier noise causes a soliton's group velocity to undergo a random-walk process. The resultant timing errors at the receiver limit the system's product of length times bit rate, in one example, to about 24 000 GHz-km.
Advanced Fiber Laser TechnologiesNonlinear Photonic SystemsOptical Network TechnologiesPhysicsOpticsSolitonTransmission (telecommunications)Optical amplifierLimit (mathematics)Pulse (music)Optical fiberOptical communicationNoise (video)
Citations
879
FWCI
1.38
field-weighted impact
References
5
Percentile
80%
vs. same field & year
Citations per year
Cited by
Fiber-optic transmission and networking: the previous 20 and the next 20 years [Invited]
Optics Express · 2018 · 870 citations
Polarization multiplexing with solitons
Journal of Lightwave Technology · 1992 · 441 citations
10 Gbit/s soliton data transmission over one million kilometres
Electronics Letters · 1991 · 363 citations
Noise of mode-locked lasers
IEEE Journal of Quantum Electronics · 1993 · 495 citations
Dark optical solitons: physics and applications
Physics Reports · 1998 · 1,315 citations
References
Transmission of stationary nonlinear optical pulses in dispersive dielectric fibers. I. Anomalous dispersion
Applied Physics Letters · 1973 · 2,872 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
