A numerical model for amplification of ultrashort pulses with high repetition rates in fiber amplifiers is presented. The pulse propagation is modeled by jointly solving the steady-state rate equations and the generalized nonlinear Schrödinger equation, which allows accurate treatment of nonlinear and dispersive effects whilst considering arbitrary spatial and spectral gain dependencies. Comparison of data acquired by using the developed model and experimental results prove to be in good agreement.QC 20161012</p
The ultrashort optical pulse which has sub-picosecond pulse width and high peak power has versatile ...
Taking into account many developments in fiber optics communications, we propose a higher nonlinear ...
The present work concerns the study of pulsed laser systems containing a fiber amplifier for boostin...
We present a numerical method for studying fiber-based ultra-short pulse amplification at high repet...
A simple method for the generation of ultrashort pulse train with high-repetition-rate is proposed a...
Pulse propagation in high gain optical fiber amplifiers with normal group velocity dispersion is stu...
International audienceAn analytical model has been developed to fully understand the concept of fibe...
For high power pulses, some higher order nonlinearities are considered, including Raman scattering a...
International audienceWe make use of two well-known numerical approaches of nonlinear pulse propagat...
Fiber pulse propagation is a common scenario in optical experiments. This article is a numerical si...
We propose and numerically demonstrate a simple method to generate a high-repetition-rate ultrashort...
Pulses propagating in a non-linear dispersive (glass) fibre can be described by the non-linear Schrö...
Performance evaluation and system design of fiber optical communications rely heavily on the simulat...
This thesis presents theoretical investigation of three topics concerned with nonlinear optical puls...
The purpose of this article is to provide practical introduction into numerical modeling of ultrasho...
The ultrashort optical pulse which has sub-picosecond pulse width and high peak power has versatile ...
Taking into account many developments in fiber optics communications, we propose a higher nonlinear ...
The present work concerns the study of pulsed laser systems containing a fiber amplifier for boostin...
We present a numerical method for studying fiber-based ultra-short pulse amplification at high repet...
A simple method for the generation of ultrashort pulse train with high-repetition-rate is proposed a...
Pulse propagation in high gain optical fiber amplifiers with normal group velocity dispersion is stu...
International audienceAn analytical model has been developed to fully understand the concept of fibe...
For high power pulses, some higher order nonlinearities are considered, including Raman scattering a...
International audienceWe make use of two well-known numerical approaches of nonlinear pulse propagat...
Fiber pulse propagation is a common scenario in optical experiments. This article is a numerical si...
We propose and numerically demonstrate a simple method to generate a high-repetition-rate ultrashort...
Pulses propagating in a non-linear dispersive (glass) fibre can be described by the non-linear Schrö...
Performance evaluation and system design of fiber optical communications rely heavily on the simulat...
This thesis presents theoretical investigation of three topics concerned with nonlinear optical puls...
The purpose of this article is to provide practical introduction into numerical modeling of ultrasho...
The ultrashort optical pulse which has sub-picosecond pulse width and high peak power has versatile ...
Taking into account many developments in fiber optics communications, we propose a higher nonlinear ...
The present work concerns the study of pulsed laser systems containing a fiber amplifier for boostin...