We show that the He-McKellar-Wilkens effect can induce a persistent flow in a Bose-Einstein condensate of polar molecules confined in a toroidal trap, with the dipolar interaction mediated via an electric dipole moment. For Bose-Einstein condensates of atoms with a magnetic dipole moment, we show that although it is theoretically possible to induce persistent flow via the Aharonov-Casher effect, the strength of the electric field required is prohibitive. We also outline an experimental geometry tailored specifically for observing the He-McKellar-Wilkens effect in toroidally trapped condensates
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
We theoretically study a spinor condensate of Rb87 atoms in a F=1 hyperfine state confined in an opt...
We investigate the rotational properties of a dipolar Bose-Einstein condensate trapped in a toroidal...
We consider a simple experimental setup, based on a harmonic confinement, where a Bose-Einstein cond...
We study a Bose-Einstein condensate of Cr52 atoms confined in a toroidal trap with a variable streng...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
We study polar molecules in a stack of strongly confined pancake traps. When dipole moments point pe...
This thesis contains a study of ultracold paramagnetic atoms or polar molecules characterized by a l...
[eng] In this thesis we study the effects of the dipole-dipole interaction on the physics of ultraco...
Motivated by recent experiments in Bose-Einstein condensed atoms that have been confined in toroidal...
This thesis describes experiments carried out with magnetically trapped Bose-Einstein condensates of...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
[[abstract]]We study polar molecules in a stack of strongly confined pancake traps. When dipole mome...
We present a theoretical analysis of dilute gas Bose-Einstein condensates with dipolar atomic intera...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
We theoretically study a spinor condensate of Rb87 atoms in a F=1 hyperfine state confined in an opt...
We investigate the rotational properties of a dipolar Bose-Einstein condensate trapped in a toroidal...
We consider a simple experimental setup, based on a harmonic confinement, where a Bose-Einstein cond...
We study a Bose-Einstein condensate of Cr52 atoms confined in a toroidal trap with a variable streng...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
We study polar molecules in a stack of strongly confined pancake traps. When dipole moments point pe...
This thesis contains a study of ultracold paramagnetic atoms or polar molecules characterized by a l...
[eng] In this thesis we study the effects of the dipole-dipole interaction on the physics of ultraco...
Motivated by recent experiments in Bose-Einstein condensed atoms that have been confined in toroidal...
This thesis describes experiments carried out with magnetically trapped Bose-Einstein condensates of...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
[[abstract]]We study polar molecules in a stack of strongly confined pancake traps. When dipole mome...
We present a theoretical analysis of dilute gas Bose-Einstein condensates with dipolar atomic intera...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
We theoretically study a spinor condensate of Rb87 atoms in a F=1 hyperfine state confined in an opt...