We present a general strong-coupling approach for the description of an atomic Bose gas beyond the Bogoliubov approximation, when infrared divergences start to occur that need to be resummed exactly. We consider the determination of several important physical properties of the Bose gas, namely the chemical potential, the contact, the speed of sound, the condensate density, the effective interatomic interaction and the three-body recombination rate. It is shown how the approach can be systematically improved with renormalization-group methods and how it reduces to the Bogoliubov theory in the weak-coupling limit
We improve on the Popov theory for partially Bose-Einstein condensed atomic gases by treating the ph...
This thesis investigates two topics: ultracold atomic collisions in a radio-frequency field and univ...
In this paper, properties of a homogeneous Bose gas with a Feshbach resonance are studied in the dil...
Due to the observation of Bose-Einstein condensation in dilute atomic 87Rb, 7Li and 23Na vapors last...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We improve the Popov theory for partially Bose-Einstein condensed atomic gases by treating the phase...
We improve the Popov theory for partially Bose-Einstein condensed atomic gases by treating the phase...
We investigate the many-body properties of two distinct degenerate systems with strong interactions,...
We theoretically investigate the equation of state and Tan's contact of a nondegenerate three-dimens...
We improve on the Popov theory for partially Bose-Einstein condensed atomic gases by treating the ph...
This thesis investigates two topics: ultracold atomic collisions in a radio-frequency field and univ...
In this paper, properties of a homogeneous Bose gas with a Feshbach resonance are studied in the dil...
Due to the observation of Bose-Einstein condensation in dilute atomic 87Rb, 7Li and 23Na vapors last...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We exploit the renormalization-group approach to establish the exact infrared behavior of an interac...
We improve the Popov theory for partially Bose-Einstein condensed atomic gases by treating the phase...
We improve the Popov theory for partially Bose-Einstein condensed atomic gases by treating the phase...
We investigate the many-body properties of two distinct degenerate systems with strong interactions,...
We theoretically investigate the equation of state and Tan's contact of a nondegenerate three-dimens...
We improve on the Popov theory for partially Bose-Einstein condensed atomic gases by treating the ph...
This thesis investigates two topics: ultracold atomic collisions in a radio-frequency field and univ...
In this paper, properties of a homogeneous Bose gas with a Feshbach resonance are studied in the dil...