We describe a finite element numerical approach to the full Hartree-Fock-Bogoliubov treatment of a vortex lattice in a rapidly rotating Bose–Einstein condensate. We study the system in the regime of high thermal or significant quantum fluctuations where we are presented with a very large nonlinear unsymmetric eigenvalue problem which is indefinite and which possesses low-lying excitations clustered arbitrarily close to zero, a problem that requires state-of-the-art numerical techniques
A rotating bosonic many-body system in a harmonic trap is studied with the three-dimensional cranked...
We consider a gas of N(<~15) Bose particles with hard-core repulsion, contained in a quasi-two-dimen...
This article introduces a new numerical method for the minimization under constraints of a discrete ...
This body of work examines the non-equilibrium dynamics of vortex lattice carrying Bose–Einstein con...
The fast rotation of a Bose Einstein condensate in a harmonic trap leads to a hexagonal lattice of v...
We study a rapidly rotating Bose–Einstein condensate confined to a finite trap in the framework of ...
We present an analytical solution for the vortex lattice in a rapidly rotating trapped Bose-Einstein...
AbstractWe study the fast rotation limit for a Bose–Einstein condensate in a quadratic plus quartic ...
Quantum fluctuations in an ultrafast rotating Bose gas at zero temperature are investigated. We calc...
For a fast rotating condensate in a harmonic trap, we investigate the structure of the vortex lattic...
When a Bose gas is cooled below a certain critical temperature, all particles gather in the same ene...
We propose an efficient and spectrally accurate numerical method for computing vortex lattices in ra...
In this thesis we develop an orthogonalised Hartree-Fock-Bogoliubov (HFB) formalism that has a zero-...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
Abstract. In this paper, we study the dynamics of rotating Bose–Einstein condensates (BEC) based on ...
A rotating bosonic many-body system in a harmonic trap is studied with the three-dimensional cranked...
We consider a gas of N(<~15) Bose particles with hard-core repulsion, contained in a quasi-two-dimen...
This article introduces a new numerical method for the minimization under constraints of a discrete ...
This body of work examines the non-equilibrium dynamics of vortex lattice carrying Bose–Einstein con...
The fast rotation of a Bose Einstein condensate in a harmonic trap leads to a hexagonal lattice of v...
We study a rapidly rotating Bose–Einstein condensate confined to a finite trap in the framework of ...
We present an analytical solution for the vortex lattice in a rapidly rotating trapped Bose-Einstein...
AbstractWe study the fast rotation limit for a Bose–Einstein condensate in a quadratic plus quartic ...
Quantum fluctuations in an ultrafast rotating Bose gas at zero temperature are investigated. We calc...
For a fast rotating condensate in a harmonic trap, we investigate the structure of the vortex lattic...
When a Bose gas is cooled below a certain critical temperature, all particles gather in the same ene...
We propose an efficient and spectrally accurate numerical method for computing vortex lattices in ra...
In this thesis we develop an orthogonalised Hartree-Fock-Bogoliubov (HFB) formalism that has a zero-...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
Abstract. In this paper, we study the dynamics of rotating Bose–Einstein condensates (BEC) based on ...
A rotating bosonic many-body system in a harmonic trap is studied with the three-dimensional cranked...
We consider a gas of N(<~15) Bose particles with hard-core repulsion, contained in a quasi-two-dimen...
This article introduces a new numerical method for the minimization under constraints of a discrete ...