We examine the propagation of ultra-short optical light pulses in dispersion-managed birefringent fiber transmission systems, in which the pulse dynamics is governed by the coupled higher-order nonlinear Schrödinger equations with higher-order linear and nonlinear optical effects. We derive the equations of motion in terms of pulse parameters such as amplitude, temporal position, width, chirp, frequency and phase, using a projection operator method, and we obtain the spatial dynamical behavior of picosecond and femtosecond pulse parameters. From our detailed analysis, we show that the stimulated Raman scattering has a strong impact on the pulse dynamics
Abstract: We present two sets of equations to describe nonlinear pulse propagation in a birefringent...
With the increasing input power in optical fibers, the dispersion problem is becoming a severe restr...
We consider coupled non-linear Schrödinger equations (CNLSE) which govern the propagation of non-lin...
International audienceWe examine the propagation of ultra-short optical light pulses in dispersion-m...
The nonlinear optical response of silica glass fibres essentially comes from two distinct contributi...
For high power pulses, some higher order nonlinearities are considered, including Raman scattering a...
Abstract: We investigate pulse propagation in a dispersion-decreasing fiber over a wide range of inp...
The objective of this work is analyze the dispersion in linear and nonlinear regime and it study as...
A generalized nonlinear Schrodinger equation to model pulse propagation in multimode optical fibers ...
Propagation of ultrashort pulses in dispersing media and optical fibers is calculated and analyzed. ...
We review recent achievements in theory of ultra-short optical pulses propagating in nonlinear fiber...
We solve numerically a generalized nonlinear Schroedinger equation by using a pseudospectral method....
Abstract—Wave-propagation equations, including effectively the second derivative in time under the c...
This work deals with theoretical aspects of pulse propagation. The core focus is on extreme, few-cyc...
The guided, single-mode propagation of ultrashort optical pulses is commonly described by a well stu...
Abstract: We present two sets of equations to describe nonlinear pulse propagation in a birefringent...
With the increasing input power in optical fibers, the dispersion problem is becoming a severe restr...
We consider coupled non-linear Schrödinger equations (CNLSE) which govern the propagation of non-lin...
International audienceWe examine the propagation of ultra-short optical light pulses in dispersion-m...
The nonlinear optical response of silica glass fibres essentially comes from two distinct contributi...
For high power pulses, some higher order nonlinearities are considered, including Raman scattering a...
Abstract: We investigate pulse propagation in a dispersion-decreasing fiber over a wide range of inp...
The objective of this work is analyze the dispersion in linear and nonlinear regime and it study as...
A generalized nonlinear Schrodinger equation to model pulse propagation in multimode optical fibers ...
Propagation of ultrashort pulses in dispersing media and optical fibers is calculated and analyzed. ...
We review recent achievements in theory of ultra-short optical pulses propagating in nonlinear fiber...
We solve numerically a generalized nonlinear Schroedinger equation by using a pseudospectral method....
Abstract—Wave-propagation equations, including effectively the second derivative in time under the c...
This work deals with theoretical aspects of pulse propagation. The core focus is on extreme, few-cyc...
The guided, single-mode propagation of ultrashort optical pulses is commonly described by a well stu...
Abstract: We present two sets of equations to describe nonlinear pulse propagation in a birefringent...
With the increasing input power in optical fibers, the dispersion problem is becoming a severe restr...
We consider coupled non-linear Schrödinger equations (CNLSE) which govern the propagation of non-lin...