We examine the conditions that give rise to metastable, persistent currents in a trapped Bose-Einstein condensate. A necessary condition for the stability of persistent currents is that the trapping potential is not a monotonically increasing function of the distance from the trap center. Persistent currents also require that the interatomic interactions are sufficiently strong and repulsive. Finally, any off-center vortex state is shown to be unstable, while a driven gas shows hysteresis
In this thesis, I explore the behavior of rotating ultra-cold Bose gases, by diagonalizing the Hamil...
We study, by means of a variational method, the stability of a condensate in a megnetically trapped ...
We consider small systems of bosonic atoms rotating in a toroidal trap. Using the method of exact nu...
Physical Review A, 76, p. 43627, http://dx.doi.org./10.1103/PhysRevA.76.043627International audienc
Motivated by recent experiments in Bose-Einstein condensed atoms that have been confined in toroidal...
We examine bosonic atoms that are confined in a toroidal, quasi-one-dimensional trap, subjected to a...
In this paper we study a gaseous Bose-Einstein condensate and show the following: (i) A minimum valu...
The phenomenon of stable persistent currents is central to the studies of superfluidity in a range o...
We examine an effectively repulsive Bose-Einstein condensate of atoms that rotates in a quadratic-pl...
We study, by means of a variational method, the stability of a condensate in a magnetically trapped ...
We consider a dipolar Bose-Einstein condensate confined in an annular potential, with all the dipole...
We study conditions under which vortices in a highly oblate harmonically trapped Bose-Einstein conde...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
We investigate the rotational properties of a dipolar Bose-Einstein condensate trapped in a toroidal...
The rotational properties of a mixture of two distinguishable Bose gases that are confined in a ring...
In this thesis, I explore the behavior of rotating ultra-cold Bose gases, by diagonalizing the Hamil...
We study, by means of a variational method, the stability of a condensate in a megnetically trapped ...
We consider small systems of bosonic atoms rotating in a toroidal trap. Using the method of exact nu...
Physical Review A, 76, p. 43627, http://dx.doi.org./10.1103/PhysRevA.76.043627International audienc
Motivated by recent experiments in Bose-Einstein condensed atoms that have been confined in toroidal...
We examine bosonic atoms that are confined in a toroidal, quasi-one-dimensional trap, subjected to a...
In this paper we study a gaseous Bose-Einstein condensate and show the following: (i) A minimum valu...
The phenomenon of stable persistent currents is central to the studies of superfluidity in a range o...
We examine an effectively repulsive Bose-Einstein condensate of atoms that rotates in a quadratic-pl...
We study, by means of a variational method, the stability of a condensate in a magnetically trapped ...
We consider a dipolar Bose-Einstein condensate confined in an annular potential, with all the dipole...
We study conditions under which vortices in a highly oblate harmonically trapped Bose-Einstein conde...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
We investigate the rotational properties of a dipolar Bose-Einstein condensate trapped in a toroidal...
The rotational properties of a mixture of two distinguishable Bose gases that are confined in a ring...
In this thesis, I explore the behavior of rotating ultra-cold Bose gases, by diagonalizing the Hamil...
We study, by means of a variational method, the stability of a condensate in a megnetically trapped ...
We consider small systems of bosonic atoms rotating in a toroidal trap. Using the method of exact nu...