By solving the three-dimensional Gross-Pitaevskii equation, we generate two-dimensional axially symmetric and anisotropic dipolar Bose-Einstein condensate bright solitons for repulsive atomic interaction, stabilized by only a weak one-dimensional optical lattice (OL) aligned along and perpendicular, respectively, to the dipole polarization direction. In the former case, vortex solitons can also be created. We show that it is possible to make a stable array of small interacting axially symmetric dipolar solitons put on alternate OL sites. Further, we demonstrate the elastic nature of the collision of two such solitons.Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Científico e Tecnológico (C...
We introduce a model for the condensate of dipolar atoms or molecules, in which the dipole-dipole in...
We demonstrate robust, stable, mobile excited states of quasi-two-dimensional (quasi-2D) dipolar Bos...
The ultracold atomic gases have provided an important environment for studying quantum many-particle...
By numerical and variational analysis of the three-dimensional Gross-Pitaevskii equation, we study t...
Using a three-dimensional mean-field model we study one-dimensional dipolar Bose-Einstein condensate...
We report some investigations on the existence of matter-wave solitons when considering cross-combin...
We demonstrate stable, robust, bright one-dimensional dipolar Bose-Einstein-condensate (BEC) soliton...
We analyse the existence, stability and dynamics of localized discrete modes with intrinsic vorticit...
Two-dimensional dipolar Bose-Einstein condensate bright and vortex solitons on one-dimensiona
We demonstrate a fully demixed (separated) robust and stable bright binary dipolar Bose-Einstein-con...
We analyze the formation and dynamics of bright unstaggered solitons in the disk-shaped dipolar Bose...
We suggest the possibility of observing and studying bright vortex solitons in attractive Bose-Einst...
We demonstrate robust, stable, mobile, quasi-one-dimensional, dark-in-bright dipolar Bose-Einsteinco...
We study families of one-dimensional matter-wave bright solitons supported by the competition of con...
A model of the Bose-Einstein condensate of dipolar atoms, confined in a combination of a cigar-shape...
We introduce a model for the condensate of dipolar atoms or molecules, in which the dipole-dipole in...
We demonstrate robust, stable, mobile excited states of quasi-two-dimensional (quasi-2D) dipolar Bos...
The ultracold atomic gases have provided an important environment for studying quantum many-particle...
By numerical and variational analysis of the three-dimensional Gross-Pitaevskii equation, we study t...
Using a three-dimensional mean-field model we study one-dimensional dipolar Bose-Einstein condensate...
We report some investigations on the existence of matter-wave solitons when considering cross-combin...
We demonstrate stable, robust, bright one-dimensional dipolar Bose-Einstein-condensate (BEC) soliton...
We analyse the existence, stability and dynamics of localized discrete modes with intrinsic vorticit...
Two-dimensional dipolar Bose-Einstein condensate bright and vortex solitons on one-dimensiona
We demonstrate a fully demixed (separated) robust and stable bright binary dipolar Bose-Einstein-con...
We analyze the formation and dynamics of bright unstaggered solitons in the disk-shaped dipolar Bose...
We suggest the possibility of observing and studying bright vortex solitons in attractive Bose-Einst...
We demonstrate robust, stable, mobile, quasi-one-dimensional, dark-in-bright dipolar Bose-Einsteinco...
We study families of one-dimensional matter-wave bright solitons supported by the competition of con...
A model of the Bose-Einstein condensate of dipolar atoms, confined in a combination of a cigar-shape...
We introduce a model for the condensate of dipolar atoms or molecules, in which the dipole-dipole in...
We demonstrate robust, stable, mobile excited states of quasi-two-dimensional (quasi-2D) dipolar Bos...
The ultracold atomic gases have provided an important environment for studying quantum many-particle...