By solving numerically the extended nonlinear Schrödinger equation we investigate the influence of higher-order dispersion effects on the propagation of optical pulses in the normal dispersion regime in a highly nonlinear fiber. Already a small amount of third-order dispersion can lead to a pulse-breakup above a certain pulse power. The splitting is followed by an expansion of the spectrum towards longer wavelengths without any impact of Raman scattering. The transfer of energy to longer wavelengths strongly depends on the dispersion profile of the fiber
A general theory is presented to describe the effects of dispersion fluctuations on optical pulses p...
Abstract: We investigate pulse propagation in a dispersion-decreasing fiber over a wide range of inp...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
By solving numerically the extended nonlinear Schrödinger equation we investigate the influence of h...
We present a pulse splitting mechanism by third-order dispersion in the normal dispersion regime, wh...
We present a systematic analysis of the effects, of higher-order dispersion, noninstantaneous nonlin...
We present a perturbation analysis that describes the effect of third-order dispersion on the simila...
The objective of this work is analyze the dispersion in linear and nonlinear regime and it study as...
We are interested by the soliton state solutions of the higher order nonlinear Schrödinger equation ...
We show that pulses undergoing wave breaking in nonlinear weakly dispersive fibers radiate, owing to...
In new communication optical fiber enforcements, the nonlinear Schrödinger equations (NLSEs) have ho...
International audienceWe report theoretical, numerical, and experimental studies of higher-order mod...
We study the evolution of a pulse propagating in a normally dispersive fiber in the presence of Kerr...
In this investigation, we examine theoretically modulational instability (MI) in a dual-core optical...
We consider the higher order nonlinear Schrödinger (HNLS) equation, which governs the nonlinear wave...
A general theory is presented to describe the effects of dispersion fluctuations on optical pulses p...
Abstract: We investigate pulse propagation in a dispersion-decreasing fiber over a wide range of inp...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
By solving numerically the extended nonlinear Schrödinger equation we investigate the influence of h...
We present a pulse splitting mechanism by third-order dispersion in the normal dispersion regime, wh...
We present a systematic analysis of the effects, of higher-order dispersion, noninstantaneous nonlin...
We present a perturbation analysis that describes the effect of third-order dispersion on the simila...
The objective of this work is analyze the dispersion in linear and nonlinear regime and it study as...
We are interested by the soliton state solutions of the higher order nonlinear Schrödinger equation ...
We show that pulses undergoing wave breaking in nonlinear weakly dispersive fibers radiate, owing to...
In new communication optical fiber enforcements, the nonlinear Schrödinger equations (NLSEs) have ho...
International audienceWe report theoretical, numerical, and experimental studies of higher-order mod...
We study the evolution of a pulse propagating in a normally dispersive fiber in the presence of Kerr...
In this investigation, we examine theoretically modulational instability (MI) in a dual-core optical...
We consider the higher order nonlinear Schrödinger (HNLS) equation, which governs the nonlinear wave...
A general theory is presented to describe the effects of dispersion fluctuations on optical pulses p...
Abstract: We investigate pulse propagation in a dispersion-decreasing fiber over a wide range of inp...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...