We construct a variety of novel localized topological structures in the 3D discrete nonlinear Schrödinger equation. The states can be created in Bose-Einstein condensates trapped in strong optical lattices and crystals built of microresonators. These new structures, most of which have no counterparts in lower dimensions, range from multipole patterns and diagonal vortices to vortex “cubes” (stack of two quasiplanar vortices) and “diamonds” (formed by two orthogonal vortices)
In this paper, we consider the existence, stability and dynamical evolution of dark vortex states in...
We study the existence, stability, and dynamics of vortex dipole and quadrupole configurations in th...
We investigate the existence and especially the linear stability of single- and multiple-charge quan...
We construct a variety of novel localized topological structures in the 3D discrete nonlinear Schröd...
In a benchmark dynamical-lattice model in three dimensions, the discrete nonlinear Schrödinger equat...
In this paper, we investigate localized discrete states with a non-zero topologi-cal charge (discret...
We consider a prototypical dynamical lattice model, namely, the discrete nonlinear Schrödinger equat...
We study the existence and stability of localized states in the discrete nonlinear Schrödinger equat...
We introduce a two-dimensional discrete nonlinear Schrödinger (DNLS) equation with self-attractive c...
We demonstrate a possibility to generate localized states in effectively one-dimensional Bose-Einste...
International audienceWe consider the existence, stability and dynamical evolution of dark vortex st...
We consider a prototypical dynamical lattice model, namely, the discrete nonlinear Schrödinger equat...
We consider the existence, stability and dynamical evolution of dark vortex states in the two-dimens...
We address the persistence and stability of three-dimensional vortex configurations in the discrete ...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
In this paper, we consider the existence, stability and dynamical evolution of dark vortex states in...
We study the existence, stability, and dynamics of vortex dipole and quadrupole configurations in th...
We investigate the existence and especially the linear stability of single- and multiple-charge quan...
We construct a variety of novel localized topological structures in the 3D discrete nonlinear Schröd...
In a benchmark dynamical-lattice model in three dimensions, the discrete nonlinear Schrödinger equat...
In this paper, we investigate localized discrete states with a non-zero topologi-cal charge (discret...
We consider a prototypical dynamical lattice model, namely, the discrete nonlinear Schrödinger equat...
We study the existence and stability of localized states in the discrete nonlinear Schrödinger equat...
We introduce a two-dimensional discrete nonlinear Schrödinger (DNLS) equation with self-attractive c...
We demonstrate a possibility to generate localized states in effectively one-dimensional Bose-Einste...
International audienceWe consider the existence, stability and dynamical evolution of dark vortex st...
We consider a prototypical dynamical lattice model, namely, the discrete nonlinear Schrödinger equat...
We consider the existence, stability and dynamical evolution of dark vortex states in the two-dimens...
We address the persistence and stability of three-dimensional vortex configurations in the discrete ...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
In this paper, we consider the existence, stability and dynamical evolution of dark vortex states in...
We study the existence, stability, and dynamics of vortex dipole and quadrupole configurations in th...
We investigate the existence and especially the linear stability of single- and multiple-charge quan...