This article introduces a new numerical method for the minimization under constraints of a discrete energy modeling multicomponents rotating Bose-Einstein condensates in the regime of strong confinement and with rotation. Moreover, we consider both segregation and coexistence regimes between the components. The method includes a discretization of a continuous energy in space dimension 2 and a gradient algorithm with adaptive time step and projection for the minimization. It is well known that, depending on the regime, the minimizers may display different structures, sometimes with vorticity (from singly quantized vortices, to vortex sheets and giant holes). In order to study numerically the structures of the minimizers, we introduce in this...
This thesis manuscript presents experimental results on Bose-Einstein condensates in optical lattice...
We study the Gross-Pitaevskii (GP) energy functional for a fast rotating Bose-Einstein condensate on...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
This article introduces a new numerical method for the minimization under constraints of a discrete ...
International audienceWe study minimizers of a Gross-Pitaevskii energy describing a two-component Bo...
When Bose-Einstein condensates are rotated sufficiently fast, a giant vortex phase appears, that is ...
A rotating superfluid such as a Bose-Einstein condensate is usually described by the Gross-Pitaevski...
We propose an efficient and spectrally accurate numerical method for computing vortex lattices in ra...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
When a two-component Bose-Einstein condensate is placed into rotation, a lattice of vortices and cor...
We present an analytical solution for the vortex lattice in a rapidly rotating trapped Bose-Einstein...
When a Bose gas is cooled below a certain critical temperature, all particles gather in the same ene...
We present OpenMP versions of C and Fortran programs for solving the Gross–Pitaevskii equation for a...
In the present work, we consider the problem of a system of few vortices N≤5 as it emerges from its ...
A relaxation method is employed to study a rotating dense Bose-Einstein condensate beyond the Thomas...
This thesis manuscript presents experimental results on Bose-Einstein condensates in optical lattice...
We study the Gross-Pitaevskii (GP) energy functional for a fast rotating Bose-Einstein condensate on...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
This article introduces a new numerical method for the minimization under constraints of a discrete ...
International audienceWe study minimizers of a Gross-Pitaevskii energy describing a two-component Bo...
When Bose-Einstein condensates are rotated sufficiently fast, a giant vortex phase appears, that is ...
A rotating superfluid such as a Bose-Einstein condensate is usually described by the Gross-Pitaevski...
We propose an efficient and spectrally accurate numerical method for computing vortex lattices in ra...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
When a two-component Bose-Einstein condensate is placed into rotation, a lattice of vortices and cor...
We present an analytical solution for the vortex lattice in a rapidly rotating trapped Bose-Einstein...
When a Bose gas is cooled below a certain critical temperature, all particles gather in the same ene...
We present OpenMP versions of C and Fortran programs for solving the Gross–Pitaevskii equation for a...
In the present work, we consider the problem of a system of few vortices N≤5 as it emerges from its ...
A relaxation method is employed to study a rotating dense Bose-Einstein condensate beyond the Thomas...
This thesis manuscript presents experimental results on Bose-Einstein condensates in optical lattice...
We study the Gross-Pitaevskii (GP) energy functional for a fast rotating Bose-Einstein condensate on...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...