Recent experimental observations of collective excitations of Bose condensed atomic vapours have stimulated interest in the microscopic description of the dynamics of a Bose-Einstein condensate confined in an external potential. We present a finite temperature field theory for collective excitations of trapped Bose-Einstein condensates and use a finite-temperature linear response formalism, which goes beyond the simple mean-field approximation of the Gross-Pitaevskii equation. The effect of the non-condensed thermal atoms we include using perturbation theory in a quasiparticle basis. This presents a simple scheme to understand the interaction between condensate and non-condensed atoms and enables us to include the effect the condensate has ...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
grantor: University of TorontoIn this thesis, we present several approximations applicable...
Ultracold atoms are exceptional tools to explore the physics of quantum matter. In fact, the high de...
Recent experimental observations of collective excitations of Bose condensed atomic vapours have sti...
We present a theory for the linear dynamics of a weakly interacting Bose gas confined inside a harmo...
We present a detailed study of the low-lying collective excitations of a spherically trapped Bose-Fe...
Interaction between collective monopole oscillations of a trapped Bose-Einstein condensate and therm...
We present the theory of low-energy collective excitations of a trapped Bose-Einstein condensate wh...
The stationary state solutions and dynamics of Bose-Einstein condensates (BECs) at T = 0 are well de...
Following the idea of the density functional approach, we develop a generalized Bogoliubov theory of...
In this thesis a number of aspects on possible manipulation of Bose-Einstein condensate in trapped a...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...
The theory of resonant generation of nonground-state Bose-Einstein condensates is extended to Bose-c...
We derive and discuss the temperature dependance of the condensate andnoncondensate density profile ...
In this thesis we develop a gapless theory of BEC which can be applied to both trapped and homogeneo...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
grantor: University of TorontoIn this thesis, we present several approximations applicable...
Ultracold atoms are exceptional tools to explore the physics of quantum matter. In fact, the high de...
Recent experimental observations of collective excitations of Bose condensed atomic vapours have sti...
We present a theory for the linear dynamics of a weakly interacting Bose gas confined inside a harmo...
We present a detailed study of the low-lying collective excitations of a spherically trapped Bose-Fe...
Interaction between collective monopole oscillations of a trapped Bose-Einstein condensate and therm...
We present the theory of low-energy collective excitations of a trapped Bose-Einstein condensate wh...
The stationary state solutions and dynamics of Bose-Einstein condensates (BECs) at T = 0 are well de...
Following the idea of the density functional approach, we develop a generalized Bogoliubov theory of...
In this thesis a number of aspects on possible manipulation of Bose-Einstein condensate in trapped a...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...
The theory of resonant generation of nonground-state Bose-Einstein condensates is extended to Bose-c...
We derive and discuss the temperature dependance of the condensate andnoncondensate density profile ...
In this thesis we develop a gapless theory of BEC which can be applied to both trapped and homogeneo...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
grantor: University of TorontoIn this thesis, we present several approximations applicable...
Ultracold atoms are exceptional tools to explore the physics of quantum matter. In fact, the high de...