The low-temperature unitary Bose gas is a fundamental paradigm in few-body and many-body physics, attracting wide theoretical and experimental interest. Here, we present experiments performed with unitary ^{133}Cs and ^{7}Li atoms in two different setups, which enable quantitative comparison of the three-body recombination rate in the low-temperature domain. We develop a theoretical model that describes the dynamic competition between two-body evaporation and three-body recombination in a harmonically trapped unitary atomic gas above the condensation temperature. We identify a universal “magic” trap depth where, within some parameter range, evaporative cooling is balanced by recombination heating and the gas temperature stays constant. Our ...
Understanding strongly correlated phases of matter, such as the quark–gluon plasma and neutron stars...
The effects of trimer continuum resonances are considered in the three-body recombination rate of a ...
International audienceWe study Efimov resonances via three-body loss in an ultracold two-component g...
International audienceThe low-temperature unitary Bose gas is a fundamental paradigm in few-body and...
The low temperature unitary Bose gas is a fundamental paradigm in few-body and many-body physics, at...
Ultracold gases have become versatile systems to study quantum many-body effects. Their high degree ...
Ultracold gases have become versatile systems to study quantum many-body effects. Their high degree ...
This thesis describes studies of out-of-equilibrium dynamics in an interacting homogeneous Bose gas....
We study the dynamics of an initially degenerate homogeneous Bose gas after an interaction quench to...
We study the dynamics of an initially degenerate homogeneous Bose gas after an interaction quench to...
We measure the zero-temperature equation of state of a homogeneous Bose gas of $^7$Li atoms by analy...
We study the dynamics of an initially degenerate homogeneous Bose gas after an interaction quench to...
The dynamics of evaporative cooling of magnetically trapped 87 Rb atoms is studied on the basis of ...
We study the quench of a degenerate ultracold Bose gas to the unitary regime, where interactions are...
We study the quench of a degenerate ultracold Bose gas to the unitary regime, where interactions are...
Understanding strongly correlated phases of matter, such as the quark–gluon plasma and neutron stars...
The effects of trimer continuum resonances are considered in the three-body recombination rate of a ...
International audienceWe study Efimov resonances via three-body loss in an ultracold two-component g...
International audienceThe low-temperature unitary Bose gas is a fundamental paradigm in few-body and...
The low temperature unitary Bose gas is a fundamental paradigm in few-body and many-body physics, at...
Ultracold gases have become versatile systems to study quantum many-body effects. Their high degree ...
Ultracold gases have become versatile systems to study quantum many-body effects. Their high degree ...
This thesis describes studies of out-of-equilibrium dynamics in an interacting homogeneous Bose gas....
We study the dynamics of an initially degenerate homogeneous Bose gas after an interaction quench to...
We study the dynamics of an initially degenerate homogeneous Bose gas after an interaction quench to...
We measure the zero-temperature equation of state of a homogeneous Bose gas of $^7$Li atoms by analy...
We study the dynamics of an initially degenerate homogeneous Bose gas after an interaction quench to...
The dynamics of evaporative cooling of magnetically trapped 87 Rb atoms is studied on the basis of ...
We study the quench of a degenerate ultracold Bose gas to the unitary regime, where interactions are...
We study the quench of a degenerate ultracold Bose gas to the unitary regime, where interactions are...
Understanding strongly correlated phases of matter, such as the quark–gluon plasma and neutron stars...
The effects of trimer continuum resonances are considered in the three-body recombination rate of a ...
International audienceWe study Efimov resonances via three-body loss in an ultracold two-component g...