We have simulated the evaporative cooling of trapped atoms using a very efficient method originally introduced for the study of molecular gas dynamics. This straightforward and intuitive method allows the dynamics of the evaporative cooling process to be studied and requires fewer simplifications and assumptions than other methods. In particular, the method is not restricted to distributions close to equilibrium and therefore it can model accurately rapid forced evaporative cooling, which is an important technique for cooling trapped atoms. We present the results of simulations for forced evaporative cooling in one, two and three dimensions
International audienceWe demonstrate experimentally the evaporative cooling of a few hundred rubidiu...
https://pro.college-de-france.fr/jean.dalibard/publications/optexpress.pdfInternational audienceUsin...
[[abstract]]This work investigates the evaporation of a thin water layer into vacuum using molecular...
We have simulated the evaporative cooling of a dilute gas of Bose particles including quantum statis...
We study the efficiency of evaporative cooling of a trapped gas of caesium atoms in the hydrodynamic...
The net evaporation process is investigated by performing non-equilibrium molecular dynam-ics simula...
Recent experiments have used forced evaporative cooling to produce Bose-Einstein condensation in dil...
12 pages, 11 figuresInternational audienceA theoretical investigation for implementing a scheme of f...
New cooling methods are needed to keep up with the heat production in processors. Evaporation in mic...
The dynamics of evaporative cooling of magnetically trapped 87 Rb atoms is studied on the basis of ...
We report on dynamical simulations of Bose-Einstein condensation via evaporative cooling in an atomi...
Applying the direct Monte Carlo simulation (DSMC) method developed for a cold atom system, we study ...
In this thesis the evaporation from and condensation on a plane liquid surface have been studied by ...
When a gas or vapour is flowing through a microchannel, the system can become too small for the Navi...
A theoretical investigation of forced evaporative cooling in radio-frequency (rf) adiabatic potentia...
International audienceWe demonstrate experimentally the evaporative cooling of a few hundred rubidiu...
https://pro.college-de-france.fr/jean.dalibard/publications/optexpress.pdfInternational audienceUsin...
[[abstract]]This work investigates the evaporation of a thin water layer into vacuum using molecular...
We have simulated the evaporative cooling of a dilute gas of Bose particles including quantum statis...
We study the efficiency of evaporative cooling of a trapped gas of caesium atoms in the hydrodynamic...
The net evaporation process is investigated by performing non-equilibrium molecular dynam-ics simula...
Recent experiments have used forced evaporative cooling to produce Bose-Einstein condensation in dil...
12 pages, 11 figuresInternational audienceA theoretical investigation for implementing a scheme of f...
New cooling methods are needed to keep up with the heat production in processors. Evaporation in mic...
The dynamics of evaporative cooling of magnetically trapped 87 Rb atoms is studied on the basis of ...
We report on dynamical simulations of Bose-Einstein condensation via evaporative cooling in an atomi...
Applying the direct Monte Carlo simulation (DSMC) method developed for a cold atom system, we study ...
In this thesis the evaporation from and condensation on a plane liquid surface have been studied by ...
When a gas or vapour is flowing through a microchannel, the system can become too small for the Navi...
A theoretical investigation of forced evaporative cooling in radio-frequency (rf) adiabatic potentia...
International audienceWe demonstrate experimentally the evaporative cooling of a few hundred rubidiu...
https://pro.college-de-france.fr/jean.dalibard/publications/optexpress.pdfInternational audienceUsin...
[[abstract]]This work investigates the evaporation of a thin water layer into vacuum using molecular...