[[abstract]]Small quantum fluctuations in solitons described by the cubic-quintic nonlinear Schr\"{o}dinger equation (CQNLSE) are studied with the linear approximation. The cases of both self-defocusing and self-focusing quintic term are considered (in the latter case, solitons may be effectively stable, despite the possibility of collapse). The numerically implemented back-propagation method is used to calculate the optimal squeezing ratio for the quantum fluctuations vs. the propagation distance. In the case of the self-defocusing quintic nonlinearity, opposite signs in front of the cubic and quintic terms make the fluctuations around bistable pairs of solitons (which have different energies for the same width) totally different. The...
Adopting variational approach the effect of defocusing quintic nonlinearity on pulse width is examin...
International audienceWe overview some recent theoretical studies of dynamical models beyond the fra...
[[abstract]]© 2005 American Physical Society-We study quantum correlations and quantum noise in soli...
We analyze the existence and stability of localized solutions in the one-dimensional discrete nonlin...
Making use of numerical collisions simulations we study the stability of the solutions of the nonlin...
Coupled-mode equations (CMEs) with self-focusing Kerr and competing quintic nonlinearities were used...
Abstract — We consider nonlinear propagation of optical pulses in a cubic-quintic nonlinear medium w...
We consider the evolution of nonlinear optical pulses in cubic-quintic nonlinear media wherein the p...
We characterize the full family of soliton solutions sitting over a background plane wave and ruled ...
Beyond a pure mathematical interest, q-deformation is promising for the modeling and interpretation ...
Artículo de publicación ISIWe investigate mobility regimes for localized modes in the discrete nonli...
We consider the existence and stability of solitons in a χ(2) coupler. Both the fundamental and seco...
We study quantum correlations and quantum noise in the soliton collision described by a general two-...
We report results of systematic simulations of the dynamics of solitons in the framework of the one-...
We modified the spectral renormalization method as the pseudospectral renormalization method in orde...
Adopting variational approach the effect of defocusing quintic nonlinearity on pulse width is examin...
International audienceWe overview some recent theoretical studies of dynamical models beyond the fra...
[[abstract]]© 2005 American Physical Society-We study quantum correlations and quantum noise in soli...
We analyze the existence and stability of localized solutions in the one-dimensional discrete nonlin...
Making use of numerical collisions simulations we study the stability of the solutions of the nonlin...
Coupled-mode equations (CMEs) with self-focusing Kerr and competing quintic nonlinearities were used...
Abstract — We consider nonlinear propagation of optical pulses in a cubic-quintic nonlinear medium w...
We consider the evolution of nonlinear optical pulses in cubic-quintic nonlinear media wherein the p...
We characterize the full family of soliton solutions sitting over a background plane wave and ruled ...
Beyond a pure mathematical interest, q-deformation is promising for the modeling and interpretation ...
Artículo de publicación ISIWe investigate mobility regimes for localized modes in the discrete nonli...
We consider the existence and stability of solitons in a χ(2) coupler. Both the fundamental and seco...
We study quantum correlations and quantum noise in the soliton collision described by a general two-...
We report results of systematic simulations of the dynamics of solitons in the framework of the one-...
We modified the spectral renormalization method as the pseudospectral renormalization method in orde...
Adopting variational approach the effect of defocusing quintic nonlinearity on pulse width is examin...
International audienceWe overview some recent theoretical studies of dynamical models beyond the fra...
[[abstract]]© 2005 American Physical Society-We study quantum correlations and quantum noise in soli...