We study a three-mode Hamiltonian modelling a heteronuclear molecular Bose–Einstein condensate. Two modes are associated with two distinguishable atomic constituents, which can combine to form a molecule represented by the third mode. Beginning with a semi-classical analogue of the model, we conduct an analysis to determine the phase space fixed points of the system. Bifurcations of the fixed points naturally separate the coupling parameter space into different regions. Two distinct scenarios are found, dependent on whether the imbalance between the number operators for the atomic modes is zero or non-zero. This result suggests the ground-state properties of the model exhibit an unusual sensitivity on the atomic imbalance. We then test this...
A study of coherent photoassociation is presented for the case of an atomic Bose-Einstein condensate...
We consider a Bose–Hubbard (BH) trimer, i.e. an ultracold Bose gas populating three quantum states. ...
We study the interactions between two atomic species in a binary Bose-Einstein condensate to revisit...
We study a three-mode Hamiltonian modelling a heteronuclear molecular Bose–Einstein condensate. Two ...
We investigate an integrable Hamiltonian modeling a heterotriatomic molecular Bose-Einstein condensa...
Exactly solvable models provide a unique method, via qualitative changes in the distribution of the ...
We investigate two solvable models for Bose–Einstein condensates and extract physical information by...
We study a model for a two-mode atomic-molecular Bose-Einstein condensate. Starting with a classical...
We adopt a three-level bosonic model to investigate the quantum phase transition in an ultracold ato...
We study the ground-state properties of an atomic-molecular Bose-Einstein condensate model through a...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
0We study the exact solution for a two-mode model describing coherent coupling between atomic and mo...
The simplest model of three coupled Bose-Einstein condensates is investigated using a group theoreti...
We provide an in-depth characterization of a three-mode Bose-Einstein condensate trapped in a symmet...
The formation of an equilibrium state from an uncorrelated thermal one through the dynamical crossin...
A study of coherent photoassociation is presented for the case of an atomic Bose-Einstein condensate...
We consider a Bose–Hubbard (BH) trimer, i.e. an ultracold Bose gas populating three quantum states. ...
We study the interactions between two atomic species in a binary Bose-Einstein condensate to revisit...
We study a three-mode Hamiltonian modelling a heteronuclear molecular Bose–Einstein condensate. Two ...
We investigate an integrable Hamiltonian modeling a heterotriatomic molecular Bose-Einstein condensa...
Exactly solvable models provide a unique method, via qualitative changes in the distribution of the ...
We investigate two solvable models for Bose–Einstein condensates and extract physical information by...
We study a model for a two-mode atomic-molecular Bose-Einstein condensate. Starting with a classical...
We adopt a three-level bosonic model to investigate the quantum phase transition in an ultracold ato...
We study the ground-state properties of an atomic-molecular Bose-Einstein condensate model through a...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
0We study the exact solution for a two-mode model describing coherent coupling between atomic and mo...
The simplest model of three coupled Bose-Einstein condensates is investigated using a group theoreti...
We provide an in-depth characterization of a three-mode Bose-Einstein condensate trapped in a symmet...
The formation of an equilibrium state from an uncorrelated thermal one through the dynamical crossin...
A study of coherent photoassociation is presented for the case of an atomic Bose-Einstein condensate...
We consider a Bose–Hubbard (BH) trimer, i.e. an ultracold Bose gas populating three quantum states. ...
We study the interactions between two atomic species in a binary Bose-Einstein condensate to revisit...