For a weakly interacting Bose gas rotating in a harmonic trap we relate the yrast states of small systems (that can be treated exactly) to the thermodynamic limit (derived within the mean-field approximation). For a few dozens of atoms, the yrast line shows distinct quasiperiodic oscillations with increasing angular momentum that originate from the internal structure of the exact many-body states. These finite-size effects disappear in the thermodynamic limit, where the Gross-Pitaevskii approximation provides the exact energy to leading order in the number of particles N. However, the exact yrast states reveal significant structure not captured by the mean-field approximation: Even in the limit of large N, the corresponding mean-field solut...
We examine several features of Bose-Einstein condensation (BEC) in an external harmonic potential we...
Since dilute Bose gas condensates were first experimentally produced, the Gross-Pitaevskii equation ...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...
When a Bose-Einstein-condensed cloud of atoms is given some angular momentum, it forms vortices arra...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
in their frequency spectra. Where possible we derive energy shifts and lifetimes of excitations. For...
We study a rapidly rotating Bose-Einstein condensate confined to a finite trap in the framework of t...
We consider a gas of N(less than or equal to 15) Bose particles with hard-core repulsion, contained ...
We study a rapidly rotating Bose–Einstein condensate confined to a finite trap in the framework of ...
We study a rotating Bose-Einstein condensate in a strongly anharmonic trap flat trap with a finite ...
We consider a periodic vortex lattice in a rotating Bose-Einstein-condensed gas, where the centrifug...
We present a theory for the linear dynamics of a weakly interacting Bose gas confined inside a harmo...
Bose-Einstein condensation, theoretically known to appear at ultralow temperatures since the 1920s, ...
We study a rotating Bose-Einstein condensate in a strongly anharmonic trap (flat trap with a finite ...
We examine several features of Bose-Einstein condensation (BEC) in an external harmonic potential we...
Since dilute Bose gas condensates were first experimentally produced, the Gross-Pitaevskii equation ...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...
When a Bose-Einstein-condensed cloud of atoms is given some angular momentum, it forms vortices arra...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
in their frequency spectra. Where possible we derive energy shifts and lifetimes of excitations. For...
We study a rapidly rotating Bose-Einstein condensate confined to a finite trap in the framework of t...
We consider a gas of N(less than or equal to 15) Bose particles with hard-core repulsion, contained ...
We study a rapidly rotating Bose–Einstein condensate confined to a finite trap in the framework of ...
We study a rotating Bose-Einstein condensate in a strongly anharmonic trap flat trap with a finite ...
We consider a periodic vortex lattice in a rotating Bose-Einstein-condensed gas, where the centrifug...
We present a theory for the linear dynamics of a weakly interacting Bose gas confined inside a harmo...
Bose-Einstein condensation, theoretically known to appear at ultralow temperatures since the 1920s, ...
We study a rotating Bose-Einstein condensate in a strongly anharmonic trap (flat trap with a finite ...
We examine several features of Bose-Einstein condensation (BEC) in an external harmonic potential we...
Since dilute Bose gas condensates were first experimentally produced, the Gross-Pitaevskii equation ...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...