International audienceWe report on the single-atom-resolved measurement of the distribution of momenta ℏk in a weakly interacting Bose gas after a 330 ms time of flight. We investigate it for various temperatures and clearly separate two contributions to the depletion of the condensate by their k dependence. The first one is the thermal depletion. The second contribution falls off as k^−4, and its magnitude increases with the in-trap condensate density as predicted by the Bogoliubov theory at zero temperature. These observations suggest associating it with the quantum depletion. How this contribution can survive the expansion of the released interacting condensate is an intriguing open question
We prepare a chemically and thermally one-dimensional (1D) quantum degenerate Bose gas in a single m...
International audienceWe scrutinize the concept of saturation of the thermal component in a partiall...
Summary form only given. In a Bose-Einstein condensate, due to the very low temperature, the s-wave ...
Xu K, Liu Y, Miller D, Chin JK, Setiawan W, Ketterle W. Observation of strong quantum depletion in a...
In this thesis, we report the first observation of the particles associated with the quantum depleti...
We present a study of the effects of temperature upon the excitation frequencies of a Bose-Einstein ...
Motivated by experiments on cold alkali atoms, I present a theoretical study of weakly interacting q...
We measure the quantum depletion of an interacting homogeneous Bose-Einstein condensate and confirm ...
structural properties. Abstract. The one-body density matrix of weakly interacting, condensed bosons...
Superfluidity, first discovered in liquid 4He, is closely related to Bose–Einstein condensation (BEC...
This thesis work is focused on the study of the emblematic example of an interacting quantum system,...
A Bose-Einstein condensate was produced in a vapor of rubidium-87 atoms that was confined by magneti...
We perform the first numerical three-dimensional studies of quantum field effects in the Bosenova ex...
We have studied the decay of a Bose-Einstein condensate (BEC) of metastable helium atoms in an optic...
We have studied dissipation in a Bose-Einstein condensed gas by moving a blue detuned laser beam thr...
We prepare a chemically and thermally one-dimensional (1D) quantum degenerate Bose gas in a single m...
International audienceWe scrutinize the concept of saturation of the thermal component in a partiall...
Summary form only given. In a Bose-Einstein condensate, due to the very low temperature, the s-wave ...
Xu K, Liu Y, Miller D, Chin JK, Setiawan W, Ketterle W. Observation of strong quantum depletion in a...
In this thesis, we report the first observation of the particles associated with the quantum depleti...
We present a study of the effects of temperature upon the excitation frequencies of a Bose-Einstein ...
Motivated by experiments on cold alkali atoms, I present a theoretical study of weakly interacting q...
We measure the quantum depletion of an interacting homogeneous Bose-Einstein condensate and confirm ...
structural properties. Abstract. The one-body density matrix of weakly interacting, condensed bosons...
Superfluidity, first discovered in liquid 4He, is closely related to Bose–Einstein condensation (BEC...
This thesis work is focused on the study of the emblematic example of an interacting quantum system,...
A Bose-Einstein condensate was produced in a vapor of rubidium-87 atoms that was confined by magneti...
We perform the first numerical three-dimensional studies of quantum field effects in the Bosenova ex...
We have studied the decay of a Bose-Einstein condensate (BEC) of metastable helium atoms in an optic...
We have studied dissipation in a Bose-Einstein condensed gas by moving a blue detuned laser beam thr...
We prepare a chemically and thermally one-dimensional (1D) quantum degenerate Bose gas in a single m...
International audienceWe scrutinize the concept of saturation of the thermal component in a partiall...
Summary form only given. In a Bose-Einstein condensate, due to the very low temperature, the s-wave ...