We study a dilute and ultracold Bose gas of interacting atoms by using an effective field theory which takes into account the finite-range effects of the interatomic potential. Within the formalism of functional integration from the grand canonical partition function, we derive beyond-mean-field analytical results which depend on both the scattering length and the effective range of the interaction. In particular, we calculate the equation of state of the bosonic system as a function of these interaction parameters both at zero and finite temperature including one-loop Gaussian fluctuation. In the case of zero-range effective interaction, we explicitly show that, due to quantum fluctuations, the bosonic system is thermodynamically stable on...
Following the idea of the density functional approach, we develop a generalized Bogoliubov theory of...
Nonuniversal effects due to leading effective-range corrections are computed for the ground-state en...
In this thesis we present a detailed investigation of the role played by quantum and thermal fluctua...
In this thesis we present a detailed investigation of the role played by quantum and thermal fluctua...
We investigate an ultracold and dilute Bose gas by taking into account a finite-range two-body inter...
The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alk...
We study quantum and thermal properties of the Bose-Hubbard model which describes a lattice gas of i...
By using exact path-integral Monte Carlo methods we calculate the equation of state of an interactin...
By using exact path-integral Monte Carlo methods we calculate the equation of state of an interactin...
4siCharacterizing the scaling with the total particle number (N) of the largest eigenvalue of the on...
For a dilute two-dimensional Bose gas the universal equation of state has a logarithmic dependence o...
We derive the equation of state of a Bose gas with contact interactions using relativistic quantum f...
We show that the chemical potential of a one-dimensional (1D) interacting Bose gas exhibits a nonmon...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alk...
Following the idea of the density functional approach, we develop a generalized Bogoliubov theory of...
Nonuniversal effects due to leading effective-range corrections are computed for the ground-state en...
In this thesis we present a detailed investigation of the role played by quantum and thermal fluctua...
In this thesis we present a detailed investigation of the role played by quantum and thermal fluctua...
We investigate an ultracold and dilute Bose gas by taking into account a finite-range two-body inter...
The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alk...
We study quantum and thermal properties of the Bose-Hubbard model which describes a lattice gas of i...
By using exact path-integral Monte Carlo methods we calculate the equation of state of an interactin...
By using exact path-integral Monte Carlo methods we calculate the equation of state of an interactin...
4siCharacterizing the scaling with the total particle number (N) of the largest eigenvalue of the on...
For a dilute two-dimensional Bose gas the universal equation of state has a logarithmic dependence o...
We derive the equation of state of a Bose gas with contact interactions using relativistic quantum f...
We show that the chemical potential of a one-dimensional (1D) interacting Bose gas exhibits a nonmon...
Abstract. At finite temperatures below the phase transition point, the Bose-Einstein conden-sation, ...
The refinement and the combination of laser cooling and evaporative cooling in dilute systems of alk...
Following the idea of the density functional approach, we develop a generalized Bogoliubov theory of...
Nonuniversal effects due to leading effective-range corrections are computed for the ground-state en...
In this thesis we present a detailed investigation of the role played by quantum and thermal fluctua...