The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormous impulse to the study of dilute atomic gases in condensed quantum states inside magnetic traps and optical lattices. High-purity and easy optical access make them ideal candidates to investigate fundamental issues on interacting quantum systems. This review presents some theoretical issues which have been addressed in this area and the numerical techniques which have been developed and used to describe them, from mean-field models to classical and quantum simulations for equilibrium and dynamical properties. After an introductory overview on dilute quantum gases, both in the homogeneus state and under harmonic or periodic confinement, the a...
This thesis deals with the Bose gas at low temperature. The first part presents the mathematical rel...
In this course we give a selfcontained introduction to the quantum field theory for trapped atomic g...
This thesis is comprised of four separate parts: in the first we calculate the second and third vir...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
International audienceThis chapter presents an overview of the specific experimental tools developed...
This volume introduces the basic concepts of Bose–Einstein condensation and superfluidity. It makes ...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
This doctoral dissertation is concerned with the physics of strongly interacting cold alkali atoms a...
In this course we give a selfcontained introduction to the quantum field theory for trapped atomic g...
The experimental realization of correlated quantum phases with ultra-cold gases in optical lattices ...
This thesis deals with the Bose gas at low temperature. The first part presents the mathematical rel...
In this course we give a selfcontained introduction to the quantum field theory for trapped atomic g...
This thesis is comprised of four separate parts: in the first we calculate the second and third vir...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
The achievement of Bose–Einstein condensation in ultra-cold vapours of alkali atoms has given enormo...
International audienceThis chapter presents an overview of the specific experimental tools developed...
This volume introduces the basic concepts of Bose–Einstein condensation and superfluidity. It makes ...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
This doctoral dissertation is concerned with the physics of strongly interacting cold alkali atoms a...
In this course we give a selfcontained introduction to the quantum field theory for trapped atomic g...
The experimental realization of correlated quantum phases with ultra-cold gases in optical lattices ...
This thesis deals with the Bose gas at low temperature. The first part presents the mathematical rel...
In this course we give a selfcontained introduction to the quantum field theory for trapped atomic g...
This thesis is comprised of four separate parts: in the first we calculate the second and third vir...