We present an experimental method for rotating a Bose-Einstein condensate trapped in an axisymmetric magnetic potential. This method is based on the anharmonicity of the trapping potential, which couples the center-of-mass motion of the condensate to its internal motion. By circularly shaking the trapping potential, we generate a circular center-of-mass motion of the condensate around the trap center. The circulating condensate undergoes rotating shape deformation and eventually relaxes into a rotating condensate with a vortex lattice. We discuss the vortex nucleation mechanism and, in particular, the role of the thermal cloud in the relaxation process. Finally, we investigate the dependence of the vortex nucleation on the elliptical polari...
Rotating dilute Bose--Einstein condensates (BEC) of alkali atoms offer a testing ground for theorie...
In this work we perform a numerical study of a rotating, harmonically trapped, Bose-Einstein condens...
For a spin-carrying particle moving in a spatially varying magnetic field, effective electromagnetic...
We have investigated the formation of vortices by rotating the purely magnetic potential confining a...
We describe the construction and operation of a time-orbiting potential trap that has different osci...
This thesis describes experiments carried out with magnetically trapped Bose-Einstein condensates of...
We report on the manipulation of the center-of-mass motion ("sloshing") of a Bose-Einstein condensat...
We consider bosonic atoms that rotate in an anharmonic trapping potential. Using numerical diagonali...
The aim of this paper is to perform a numerical and analytical study of a rotating Bose Einstein con...
We examine an effectively repulsive Bose-Einstein condensate of atoms that rotates in a quadratic-pl...
Rapidly rotating Bose-Einstein condensates confined in anharmonic traps can exhibit a rich variety o...
4 pages, 2 figuresWe investigate the effect of the anisotropy of a harmonic trap on the behaviour of...
We investigate the rotational properties of a Bose-Einstein condensate (BEC) in an effective magneti...
We present a comprehensive theoretical study of vortex lattice formation in atomic Bose-Einstein con...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
Rotating dilute Bose--Einstein condensates (BEC) of alkali atoms offer a testing ground for theorie...
In this work we perform a numerical study of a rotating, harmonically trapped, Bose-Einstein condens...
For a spin-carrying particle moving in a spatially varying magnetic field, effective electromagnetic...
We have investigated the formation of vortices by rotating the purely magnetic potential confining a...
We describe the construction and operation of a time-orbiting potential trap that has different osci...
This thesis describes experiments carried out with magnetically trapped Bose-Einstein condensates of...
We report on the manipulation of the center-of-mass motion ("sloshing") of a Bose-Einstein condensat...
We consider bosonic atoms that rotate in an anharmonic trapping potential. Using numerical diagonali...
The aim of this paper is to perform a numerical and analytical study of a rotating Bose Einstein con...
We examine an effectively repulsive Bose-Einstein condensate of atoms that rotates in a quadratic-pl...
Rapidly rotating Bose-Einstein condensates confined in anharmonic traps can exhibit a rich variety o...
4 pages, 2 figuresWe investigate the effect of the anisotropy of a harmonic trap on the behaviour of...
We investigate the rotational properties of a Bose-Einstein condensate (BEC) in an effective magneti...
We present a comprehensive theoretical study of vortex lattice formation in atomic Bose-Einstein con...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
Rotating dilute Bose--Einstein condensates (BEC) of alkali atoms offer a testing ground for theorie...
In this work we perform a numerical study of a rotating, harmonically trapped, Bose-Einstein condens...
For a spin-carrying particle moving in a spatially varying magnetic field, effective electromagnetic...