Three bosonic, spin-polarized atoms in a spherical oscillator potential constitutes the simplest nontrivial Bose-Einstein condensate (BEC). The present paper develops the tools needed to understand the nature of the complete J=0 energy spectrum for this prototype system, assuming a sum of two-body potentials. The resulting spectrum is calculated as a function of the two-body scattering length a_sc, which documents the evolution of certain many-body levels that evolve from BEC-type to molecular-type as the scattering length is decreased. Implications for the behavior of the condensate excited-state spectrum and for condensate formation and decay are elucidated. The energy levels evolve smoothly, even through the regime where the number of tw...
We report on measurements of three-body recombination rates in an ultracold gas of 7Li atoms in the ...
We examine Bose–Einstein condensation (BEC) for particles trapped in a harmonic potential by conside...
We study zero-energy collisions between three identical bosons with spin f=1 interacting via pairwis...
We review our recent study on the ground state energy of dilute Bose gases with three-body interacti...
A time-dependent Kohn-Sham-like equation for N bosons in a trap is generalized for the case of inela...
Open Access.Classically identical particles become quantum mechanically indistinguishable. Satyendra...
Bose-Einstein condensates of ultracold atoms serve as low-entropy sources for a multitude of quantum...
We investigate the crossover from BCS pairing to molecular Bose-Einstein condensation (BEC) in an at...
Bose-Einstein condensation, theoretically known to appear at ultralow temperatures since the 1920s, ...
Feshbach resonances notwithstanding, most experimentally realized atomic-vapor condensates are dilut...
We have analyzed our recently measured three-body loss rate coefficient for a Bose-Einstein condensa...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...
We review recent progress towards a rigorous understanding of the Bogoliubov approximation for boson...
Elastic scattering of three bosons at low energy is a fundamental problem in the many-body descripti...
We present a quantitative evaluation of the predictions of mean-field theory for describing a Bose-E...
We report on measurements of three-body recombination rates in an ultracold gas of 7Li atoms in the ...
We examine Bose–Einstein condensation (BEC) for particles trapped in a harmonic potential by conside...
We study zero-energy collisions between three identical bosons with spin f=1 interacting via pairwis...
We review our recent study on the ground state energy of dilute Bose gases with three-body interacti...
A time-dependent Kohn-Sham-like equation for N bosons in a trap is generalized for the case of inela...
Open Access.Classically identical particles become quantum mechanically indistinguishable. Satyendra...
Bose-Einstein condensates of ultracold atoms serve as low-entropy sources for a multitude of quantum...
We investigate the crossover from BCS pairing to molecular Bose-Einstein condensation (BEC) in an at...
Bose-Einstein condensation, theoretically known to appear at ultralow temperatures since the 1920s, ...
Feshbach resonances notwithstanding, most experimentally realized atomic-vapor condensates are dilut...
We have analyzed our recently measured three-body loss rate coefficient for a Bose-Einstein condensa...
Bose-Einstein condensation (BEC) of an ideal gas is investigated, beyond the thermodynamic limit, fo...
We review recent progress towards a rigorous understanding of the Bogoliubov approximation for boson...
Elastic scattering of three bosons at low energy is a fundamental problem in the many-body descripti...
We present a quantitative evaluation of the predictions of mean-field theory for describing a Bose-E...
We report on measurements of three-body recombination rates in an ultracold gas of 7Li atoms in the ...
We examine Bose–Einstein condensation (BEC) for particles trapped in a harmonic potential by conside...
We study zero-energy collisions between three identical bosons with spin f=1 interacting via pairwis...