We investigate the coherent propagation of dilute atomic Bose-Einstein condensates through irregularly shaped billiard geometries that are attached to uniform incoming and outgoing waveguides. Using the mean-field description based on the nonlinear Gross–Pitaevskii equation, we develop a diagrammatic theory for the self-consistent stationary scattering state of the interacting condensate, which is combined with the semiclassical representation of the single-particle Green function in terms of chaotic classical trajectories within the billiard. This analytical approach predicts a universal dephasing of weak localization in the presence of a small interaction strength between the atoms, which is found to be in good agreement with the numerica...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
By numerical solution and variational approximation of the Gross-Pitaevskii equation, we studied the...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
We investigate the coherent propagation of dilute atomic Bose-Einstein condensates through irregular...
We investigate the coherent propagation of dilute atomic Bose-Einstein condensates through irregular...
We study the quasi-stationary propagation of Bose-Einstein condensates through two-dimensional mesos...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
By numerical and variational solutions of the Gross-Pitaevskii equation, we studied the localization...
peer reviewedWe investigate the interplay between coherent effects characteristic of the propagation...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
The recent experimental advances in manipulating ultra-cold atoms make it feasible to study coherent...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
By numerical solution and variational approximation of the Gross-Pitaevskii equation, we studied the...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
We investigate the coherent propagation of dilute atomic Bose-Einstein condensates through irregular...
We investigate the coherent propagation of dilute atomic Bose-Einstein condensates through irregular...
We study the quasi-stationary propagation of Bose-Einstein condensates through two-dimensional mesos...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
We study quantum transport of an interacting Bose-Einstein condensate in a two-dimensional disorder ...
By numerical and variational solutions of the Gross-Pitaevskii equation, we studied the localization...
peer reviewedWe investigate the interplay between coherent effects characteristic of the propagation...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
The recent experimental advances in manipulating ultra-cold atoms make it feasible to study coherent...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
By numerical solution and variational approximation of the Gross-Pitaevskii equation, we studied the...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...