Bose-einstein condensates have received wide attention in the last decades given their unique properties. In this study, we apply supersymmetry rules on an existing Hamiltonian and derive a new model which represents an inverse scattering problem with similarities to the circuit and the harmonic oscillator equations. The new Hamiltonian is analysed and its numerical solutions are presented. The results suggest that the SUSY Hamiltonian describes the formation of vortices in a homogeneous magnetic field in a rotating system.Modeling of quantum vorticity and turbulence in two- and three-dimensional system
Fundamental physical phenomena, such as gravity, electromagnetism and light have been studied over t...
In the present work, we motivate and explore the dynamics of a dissipative variant of the nonlinear ...
An analytic solution of the Gross-Pitaevskii equation for a rotating Bose-Einstein condensate of tra...
Bose-einstein condensates have received wide attention in the last decades given their unique proper...
Vortexes in superfluids are a critical part of quantum optics, quantum dynamics studies and quantum ...
Vortexes in three dimensional systems are an emerging topic of study in the realm of quantum physics...
We consider superfluidity and quantum vorticity in rotating spacetimes. The system is described by a...
A relaxation method is employed to study a rotating dense Bose-Einstein condensate beyond the Thomas...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
We present the exact diagonalization study of rotating Bose-condensed gas interacting via finite-ran...
A rotating bosonic many-body system in a harmonic trap is studied with the three-dimensional cranked...
In this thesis, I explore the behavior of rotating ultra-cold Bose gases, by diagonalizing the Hamil...
https://pro.college-de-france.fr/jean.dalibard/publications/2009_Nature_Physics.pdfInternational aud...
The interest in vortices and vortex lattices was sparked by the prediction of quantisation of circul...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
Fundamental physical phenomena, such as gravity, electromagnetism and light have been studied over t...
In the present work, we motivate and explore the dynamics of a dissipative variant of the nonlinear ...
An analytic solution of the Gross-Pitaevskii equation for a rotating Bose-Einstein condensate of tra...
Bose-einstein condensates have received wide attention in the last decades given their unique proper...
Vortexes in superfluids are a critical part of quantum optics, quantum dynamics studies and quantum ...
Vortexes in three dimensional systems are an emerging topic of study in the realm of quantum physics...
We consider superfluidity and quantum vorticity in rotating spacetimes. The system is described by a...
A relaxation method is employed to study a rotating dense Bose-Einstein condensate beyond the Thomas...
We consider a 2D rotating Bose gas described by the Gross-Pitaevskii (GP) theory and investigate the...
We present the exact diagonalization study of rotating Bose-condensed gas interacting via finite-ran...
A rotating bosonic many-body system in a harmonic trap is studied with the three-dimensional cranked...
In this thesis, I explore the behavior of rotating ultra-cold Bose gases, by diagonalizing the Hamil...
https://pro.college-de-france.fr/jean.dalibard/publications/2009_Nature_Physics.pdfInternational aud...
The interest in vortices and vortex lattices was sparked by the prediction of quantisation of circul...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
Fundamental physical phenomena, such as gravity, electromagnetism and light have been studied over t...
In the present work, we motivate and explore the dynamics of a dissipative variant of the nonlinear ...
An analytic solution of the Gross-Pitaevskii equation for a rotating Bose-Einstein condensate of tra...