The critical temperature of a dilute Bose gas is obtained in terms of the associated small gas parameter, by a unifying approach which treats three and two spatial dimensions on equal footing, even though the superfluid phase transition is known to be driven by different mechanisms in three and two dimensions. Good agreement is found with the critical temperature obtained by recent Monte Carlo data in three dimensions and by previous analytic methods in two dimensions, respectively. This approach is expected to apply more generally to systems where the many-body theory is controlled by a small physical parameter in the high-temperature phase
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...
The critical temperature of a dilute Bose gas is obtained in terms of the associated small gas param...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show t...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show t...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show ...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show ...
We compute the critical temperature of Bose-Einstein condensation in dilute three-dimensional homoge...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...
The critical temperature of a dilute Bose gas is obtained in terms of the associated small gas param...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show t...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show t...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show ...
We consider a two-dimensional dilute Bose gas above its superfluid transition temperature. We show ...
We compute the critical temperature of Bose-Einstein condensation in dilute three-dimensional homoge...
We calculate the superfluid transition temperature of homogeneous interacting Bose gases in three an...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
With a high-performance Monte Carlo algorithm we study the interaction-induced shift of the critical...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...