The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alkali atoms lead to the achievement of Bose-Einstein condensation in 1995. Nowadays there is a fruitful interplay between theoretical and experimental results: in this context, the study of uniform Bose gases plays an important role in the comprehension of the static and dynamic properties of a bosonic system. Here we use quantum field theory, within the approach of functional integration, to study an homogeneous system of weakly-interacting bosonic cold atoms. After characterizing their thermodynamical properties, we derive - at a gaussian level - the number density and the superfluid density in three and in two spatial dimensions, expressed a...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alk...
We study a dilute and ultracold Bose gas of interacting atoms by using an effective field theory whi...
This volume introduces the basic concepts of Bose–Einstein condensation and superfluidity. It makes ...
This thesis deals with the Bose gas at low temperature. The first part presents the mathematical rel...
We study the Bose-Einstein condensation phenomenon in a two-dimensional (2D) system of bosons subjec...
We study the superfluid transition of weakly interacting Bose gases, classical fields and related sy...
In the Bose-Einstein condensation of interacting atoms or molecules such as 87Rb, 23Na and 7Li, the ...
In the Bose-Einstein condensation of interacting atoms or molecules such as 87Rb, 23Na and 7Li, the ...
We derive a mean-field description for two-dimensional (2D) interacting Bose gases at arbitrary temp...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
Bose-Einstein condensation in an ideal (i.e. interactionless) boson gas can be studied analytically,...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alk...
We study a dilute and ultracold Bose gas of interacting atoms by using an effective field theory whi...
This volume introduces the basic concepts of Bose–Einstein condensation and superfluidity. It makes ...
This thesis deals with the Bose gas at low temperature. The first part presents the mathematical rel...
We study the Bose-Einstein condensation phenomenon in a two-dimensional (2D) system of bosons subjec...
We study the superfluid transition of weakly interacting Bose gases, classical fields and related sy...
In the Bose-Einstein condensation of interacting atoms or molecules such as 87Rb, 23Na and 7Li, the ...
In the Bose-Einstein condensation of interacting atoms or molecules such as 87Rb, 23Na and 7Li, the ...
We derive a mean-field description for two-dimensional (2D) interacting Bose gases at arbitrary temp...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
Bose-Einstein condensation in an ideal (i.e. interactionless) boson gas can be studied analytically,...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The fact that two-dimensional interacting trapped systems do not undergo Bose-Einstein Condensation ...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...