We derive rigorously the Fokker-Planck equation that governs the statistics of soliton parameters in optical transmission lines in the presence of additive amplifier spontaneous emission. We demonstrate that these statistics are generally non-Gaussian. We present exact marginal probability-density functions for soliton parameters for some cases. A WKB approach is applied to describe the tails of the probability-density functions
The Fokker-Planck (FP) equation is used to develop a general method for finding the spectral density...
We present hereafter some results on stochastic nonlinear Schrödinger with a power law nonlinearity...
Abstract—In this work, we use a new approach to model pulse energy in long-haul optical fiber transm...
We derive rigorously the Fokker-Planck equation that governs the statistics of soliton parameters in...
pr qu m e statistics. Therefore knowledge of the whole PDF, including timate of these tai tion dista...
A study was performed on non-Gaussian statistics of an optical soliton in the presence of amplified ...
We investigate the statistics of a vector Manakov soliton in the presence of additive Gaussian white...
We examine statistics of two interacting optical solitons and describe timing jitter caused by spont...
We examine the statistics of three interacting optical solitons under the effects of amplifier noise...
We find the probability distribution of the fluctuating parameters of a soliton propagating through ...
The nonlinear Schrödinger equation (NLSE) is often used as a master path-average model for fiber-opt...
A closed-form expression for a lower bound on the per soliton capacity of the nonlinear optical fibr...
We study the interplay between amplifier noise and birefringent disorder in the case of strongly non...
The propagation of optical pulses in two types of fibers with randomly varying dispersion is investi...
Abstract—We present a novel linearization method to calculate accurate eye diagrams and bit error ra...
The Fokker-Planck (FP) equation is used to develop a general method for finding the spectral density...
We present hereafter some results on stochastic nonlinear Schrödinger with a power law nonlinearity...
Abstract—In this work, we use a new approach to model pulse energy in long-haul optical fiber transm...
We derive rigorously the Fokker-Planck equation that governs the statistics of soliton parameters in...
pr qu m e statistics. Therefore knowledge of the whole PDF, including timate of these tai tion dista...
A study was performed on non-Gaussian statistics of an optical soliton in the presence of amplified ...
We investigate the statistics of a vector Manakov soliton in the presence of additive Gaussian white...
We examine statistics of two interacting optical solitons and describe timing jitter caused by spont...
We examine the statistics of three interacting optical solitons under the effects of amplifier noise...
We find the probability distribution of the fluctuating parameters of a soliton propagating through ...
The nonlinear Schrödinger equation (NLSE) is often used as a master path-average model for fiber-opt...
A closed-form expression for a lower bound on the per soliton capacity of the nonlinear optical fibr...
We study the interplay between amplifier noise and birefringent disorder in the case of strongly non...
The propagation of optical pulses in two types of fibers with randomly varying dispersion is investi...
Abstract—We present a novel linearization method to calculate accurate eye diagrams and bit error ra...
The Fokker-Planck (FP) equation is used to develop a general method for finding the spectral density...
We present hereafter some results on stochastic nonlinear Schrödinger with a power law nonlinearity...
Abstract—In this work, we use a new approach to model pulse energy in long-haul optical fiber transm...