We investigate the ground-state properties of a two-species condensate of interacting bosons in a double-well potential. Each atomic species is described by a two-space-mode Bose-Hubbard model. The coupling of the two species is controlled by the interspecies interaction W. To analyze the ground state when W is varied in both the repulsive ( W > 0 ) and the attractive ( W < 0 ) regime, we apply two different approaches. First we solve the problem numerically (i) to obtain an exact description of the ground-state structure and (ii) to characterize its correlation properties by studying (the appropriate extensions to the present case of) the quantum Fisher information, the coherence visibility and the entanglement entropy as functions of W. T...
The study of entanglement between bosonic systems is of primary importance for es-tablishing feasibl...
We revisit the delocalized to self-trapping transition in an interacting bosonic fluid confined in a...
A simple second quantization model is used to describe a two-mode Bose-Einstein condensate (BEC), wh...
We investigate the ground-state properties of a two-species condensate of interacting bosons in a d...
This work contains a detailed analysis of the properties of the ground state of a two-component two-...
We study the interpolation from occupation number Fock states to Schr\uf6dinger cat states on system...
Motivated by the importance of entanglement and correlation indicators in the analysis of quantum sy...
The study of entanglement between bosonic systems is of primary importance for establishing feasible...
We consider a two-mode atomic Josephson junction real- ized with dilute dipolar bosons confined by a...
We consider a bosonic Josephson junction made of N ultracold and dilute atoms confined by a quasi-o...
We study interacting dipolar atomic bosons in a triple-well potential within a ring geometry. This s...
We consider a bosonic Josephson junction made of $N$ ultracold and dilute atoms confined by a quasi ...
8 pagesInternational audienceWe study the quantum dynamics of a binary mixture of Bose-Einstein cond...
We study the ground state for many interacting bosons in a double-well potential, in a joint limit w...
The study of entanglement between bosonic systems is of primary importance for establishing feasible...
The study of entanglement between bosonic systems is of primary importance for es-tablishing feasibl...
We revisit the delocalized to self-trapping transition in an interacting bosonic fluid confined in a...
A simple second quantization model is used to describe a two-mode Bose-Einstein condensate (BEC), wh...
We investigate the ground-state properties of a two-species condensate of interacting bosons in a d...
This work contains a detailed analysis of the properties of the ground state of a two-component two-...
We study the interpolation from occupation number Fock states to Schr\uf6dinger cat states on system...
Motivated by the importance of entanglement and correlation indicators in the analysis of quantum sy...
The study of entanglement between bosonic systems is of primary importance for establishing feasible...
We consider a two-mode atomic Josephson junction real- ized with dilute dipolar bosons confined by a...
We consider a bosonic Josephson junction made of N ultracold and dilute atoms confined by a quasi-o...
We study interacting dipolar atomic bosons in a triple-well potential within a ring geometry. This s...
We consider a bosonic Josephson junction made of $N$ ultracold and dilute atoms confined by a quasi ...
8 pagesInternational audienceWe study the quantum dynamics of a binary mixture of Bose-Einstein cond...
We study the ground state for many interacting bosons in a double-well potential, in a joint limit w...
The study of entanglement between bosonic systems is of primary importance for establishing feasible...
The study of entanglement between bosonic systems is of primary importance for es-tablishing feasibl...
We revisit the delocalized to self-trapping transition in an interacting bosonic fluid confined in a...
A simple second quantization model is used to describe a two-mode Bose-Einstein condensate (BEC), wh...