By using a reductive perturbation technique applied to a two-level model, this study puts forward a generic two-dimensional sine-Gordon evolution equation governing the propagation of femtosecond spatiotemporal optical solitons in Kerr media beyond the slowly varying envelope approximation. Direct numerical simulations show that, in contrast to the long-wave approximation, no collapse occurs, and that robust (2+1)-dimensional ultrashort light bullets may form from adequately chosen few-cycle input spatiotemporal wave forms. In contrast to the case of quadratic nonlinearity, the light bullets oscillate in both space and time and are therefore not steady-state lumps
Nonlinear dissipative systems display the full (3+1)D spatiotemporal dynamics of stable optical soli...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
We observe the formation of an intense optical wave packet fully localized in all dimensions, i.e., ...
Article de revue (Article scientifique dans une revue à comité de lecture)International audienceBy u...
Light bullets are spatially localized ultra-short optical pulses in more than one space dimensions. ...
We overview some recent theoretical studies of dynamical models beyond the framework of slowly varyi...
Communicated by M. I. Weinstein. Summary. The propagation and interaction in more than one space dim...
The spatiotemporal dynamics of few-cycle optical scalar and vector solitons in nonlinear Kerr media ...
We consider the propagation of ultrashort optical solitons in media described by a general Hamiltoni...
International audienceWe overview some recent theoretical studies of dynamical models beyond the fra...
Using the numerical solution of the nonlinear Schrodinger equation and a variational method, it is s...
International audienceBy using a powerful reductive perturbation technique, or a multiscale analysis...
The spatiotemporal dynamics of few-cycle optical pulses in nonlinear Kerr media is studied outside t...
We put forward through both analytical and numerical methods the advantage of using non–slowly-varyi...
Stable two- and three-dimensional spatiotemporal solitons (STSs) in second-harmonic-generating media...
Nonlinear dissipative systems display the full (3+1)D spatiotemporal dynamics of stable optical soli...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
We observe the formation of an intense optical wave packet fully localized in all dimensions, i.e., ...
Article de revue (Article scientifique dans une revue à comité de lecture)International audienceBy u...
Light bullets are spatially localized ultra-short optical pulses in more than one space dimensions. ...
We overview some recent theoretical studies of dynamical models beyond the framework of slowly varyi...
Communicated by M. I. Weinstein. Summary. The propagation and interaction in more than one space dim...
The spatiotemporal dynamics of few-cycle optical scalar and vector solitons in nonlinear Kerr media ...
We consider the propagation of ultrashort optical solitons in media described by a general Hamiltoni...
International audienceWe overview some recent theoretical studies of dynamical models beyond the fra...
Using the numerical solution of the nonlinear Schrodinger equation and a variational method, it is s...
International audienceBy using a powerful reductive perturbation technique, or a multiscale analysis...
The spatiotemporal dynamics of few-cycle optical pulses in nonlinear Kerr media is studied outside t...
We put forward through both analytical and numerical methods the advantage of using non–slowly-varyi...
Stable two- and three-dimensional spatiotemporal solitons (STSs) in second-harmonic-generating media...
Nonlinear dissipative systems display the full (3+1)D spatiotemporal dynamics of stable optical soli...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
We observe the formation of an intense optical wave packet fully localized in all dimensions, i.e., ...