We derive a general and exact equation of motion for a quantized vortex in an inhomogeneous two-dimensional Bose-Einstein condensate. This equation expresses the velocity of a vortex as a sum of local ambient density and phase gradients in the vicinity of the vortex. We perform Gross-Pitaevskii simulations of single-vortex dynamics in both harmonic and hard-walled disk-shaped traps, and find excellent agreement in both cases with our analytical prediction. The simulations reveal that, in a harmonic trap, the main contribution to the vortex velocity is an induced ambient phase gradient, a finding that contradicts the commonly quoted result that the local density gradient is the only relevant effect in this scenario. We use our analytical vor...
We study the dynamics of a single and a pair of vortices in quasi two-dimensional Bose-Einstein cond...
We study the dynamics of vortices in ideal and weakly interacting Bose-Einstein condensates using a ...
International audienceAbstract Vortices in a Bose-Einstein condensate are modelled as spontaneously ...
We have performed numerical simulations of various vortex configurations in a trapped BoseEinstein c...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
We study the way in which the geometry of the trapping potential affects the vortex velocity in a Bo...
We study the way in which the geometry of the trapping potential affects the vortex velocity in a Bo...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
We numerically obtain stationary rings of vortices in pancake-shaped Bose-Einstein condensates confi...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
Most of the literature on quantum vortices predicting various states of vortex matter in three dimen...
We study the dynamics of vortices in ideal and weakly interacting Bose-Einstein condensates using a ...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate th...
We study the dynamics of a single vortex and a pair of vortices in quasi two-dimensional Bose-Einste...
We derive a set of equations that describes the shape and behavior of a single perturbed vortex line...
We study the dynamics of a single and a pair of vortices in quasi two-dimensional Bose-Einstein cond...
We study the dynamics of vortices in ideal and weakly interacting Bose-Einstein condensates using a ...
International audienceAbstract Vortices in a Bose-Einstein condensate are modelled as spontaneously ...
We have performed numerical simulations of various vortex configurations in a trapped BoseEinstein c...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
We study the way in which the geometry of the trapping potential affects the vortex velocity in a Bo...
We study the way in which the geometry of the trapping potential affects the vortex velocity in a Bo...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
We numerically obtain stationary rings of vortices in pancake-shaped Bose-Einstein condensates confi...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
Most of the literature on quantum vortices predicting various states of vortex matter in three dimen...
We study the dynamics of vortices in ideal and weakly interacting Bose-Einstein condensates using a ...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate th...
We study the dynamics of a single vortex and a pair of vortices in quasi two-dimensional Bose-Einste...
We derive a set of equations that describes the shape and behavior of a single perturbed vortex line...
We study the dynamics of a single and a pair of vortices in quasi two-dimensional Bose-Einstein cond...
We study the dynamics of vortices in ideal and weakly interacting Bose-Einstein condensates using a ...
International audienceAbstract Vortices in a Bose-Einstein condensate are modelled as spontaneously ...