The characteristics of an optical beam propagating in a medium should be preserved for many applications related to fiber optic communication. The phenomenon of self-trapping due to adequate balance among linear and nonlinear effects may preserve the characteristics of an optical beam. In this work, we perform a theoretical investigation on the propagation of a spatiotemporal elliptical super-Gaussian beam in a Kerr nonlinear metamaterial waveguide. We follow the Lagrangian variational method and numerical analysis using the appropriate trial function for the input elliptical super-Gaussian beam and analyze the self-trapping and deformation of the propagating beam in metamaterials. We obtain special conditions to observe the self-trapping a...
The beam quality parameter M-x(2) for self-phase modulated Gaussian and super-Gaussian beams has bee...
We experimentally and numerically investigate the propagation of light bullets (LBs) excited in two-...
The propagation of profiled optical beams through cubically nonlinear Kerr media is investigated, th...
794-797Using variational approach with elliptic Gaussian laser beam as trial function, the combined...
The propagation of optical beams and pulses under the influence of nonlinear effects is characterize...
The nonlinear dynamical property of Lorentz-Gaussian beams in Kerr media is investigated analyticall...
This thesis presents the nonlinear propagation dynamics in isotropic media. The influence of initial...
We investigate three-dimensional propagation in bulk Kerr media of beams possessing different widths...
International audienceWe present a new experimental technique based on the analysis of beam self-act...
Many analytical techniques exist to explore the propagation of certain laser beams in free space, or...
We present a detailed time-domain analysis of a promising nonlinear optical device consisting of alt...
The propagation of stationary three-dimensional nonlinear guided waves and of Gaussian beams in a sl...
International audienceWe present a reliable and original experimental technique based on the analysi...
We study the formation and the dynamics of spatially broad light bullets generated in silica wavegui...
The beam quality parameter M-x(2) for self-phase modulated Gaussian and super-Gaussian beams has bee...
We experimentally and numerically investigate the propagation of light bullets (LBs) excited in two-...
The propagation of profiled optical beams through cubically nonlinear Kerr media is investigated, th...
794-797Using variational approach with elliptic Gaussian laser beam as trial function, the combined...
The propagation of optical beams and pulses under the influence of nonlinear effects is characterize...
The nonlinear dynamical property of Lorentz-Gaussian beams in Kerr media is investigated analyticall...
This thesis presents the nonlinear propagation dynamics in isotropic media. The influence of initial...
We investigate three-dimensional propagation in bulk Kerr media of beams possessing different widths...
International audienceWe present a new experimental technique based on the analysis of beam self-act...
Many analytical techniques exist to explore the propagation of certain laser beams in free space, or...
We present a detailed time-domain analysis of a promising nonlinear optical device consisting of alt...
The propagation of stationary three-dimensional nonlinear guided waves and of Gaussian beams in a sl...
International audienceWe present a reliable and original experimental technique based on the analysi...
We study the formation and the dynamics of spatially broad light bullets generated in silica wavegui...
The beam quality parameter M-x(2) for self-phase modulated Gaussian and super-Gaussian beams has bee...
We experimentally and numerically investigate the propagation of light bullets (LBs) excited in two-...
The propagation of profiled optical beams through cubically nonlinear Kerr media is investigated, th...