A quantitative, analytic model of evaporative cooling covering both the small- (4) η regimes is presented. h is the dimensionless parameter defined as the trap depth divided by the temperature of the trapped sample. Although some of the same general properties present at large η are also present at small η, there are significant quantitative differences. These differences must be taken into account in order to accurately extract from the trapping data quantitative measurements of, for example, collisional atomic cross sections.Physic
Elastic and inelastic collision-rate constants of 52Cr in the temperature range of 20 mK to 1 K are ...
We have evaporatively cooled caesium atoms in a magnetic trap to temperatures as low as 8 nK and pro...
A major challenge in particle physics detectors is to transport the heat developed in their electron...
International audienceWe demonstrate experimentally the evaporative cooling of a few hundred rubidiu...
Evaporative cooling has proven to be an invaluable technique in atomic physics, allowing for the stu...
Metastable helium is buffer gas cooled, magnetically trapped, and evaporatively cooled in large numb...
We have simulated the evaporative cooling of trapped atoms using a very efficient method originally ...
We report the application of evaporative cooling to clouds of trapped antiprotons, resulting in plas...
Author Institution: Department of Chemistry, Princeton UniversityIt is now well established experime...
A model was developed to allow simulation of evaporative cooling experiments in situations where the...
We describe the implementation of evaporative cooling of charged particles in the ALPHA apparatus. F...
https://pro.college-de-france.fr/jean.dalibard/publications/optexpress.pdfInternational audienceUsin...
This document has been made available through Purdue e-Pubs, a service of the Purdue University Libr...
A comprehensive model for the prediction of evaporative cooling of solid surfaces induced by the imp...
Indirect evaporative cooling an efficient and cheap way to reduce the heat load in a building. For a...
Elastic and inelastic collision-rate constants of 52Cr in the temperature range of 20 mK to 1 K are ...
We have evaporatively cooled caesium atoms in a magnetic trap to temperatures as low as 8 nK and pro...
A major challenge in particle physics detectors is to transport the heat developed in their electron...
International audienceWe demonstrate experimentally the evaporative cooling of a few hundred rubidiu...
Evaporative cooling has proven to be an invaluable technique in atomic physics, allowing for the stu...
Metastable helium is buffer gas cooled, magnetically trapped, and evaporatively cooled in large numb...
We have simulated the evaporative cooling of trapped atoms using a very efficient method originally ...
We report the application of evaporative cooling to clouds of trapped antiprotons, resulting in plas...
Author Institution: Department of Chemistry, Princeton UniversityIt is now well established experime...
A model was developed to allow simulation of evaporative cooling experiments in situations where the...
We describe the implementation of evaporative cooling of charged particles in the ALPHA apparatus. F...
https://pro.college-de-france.fr/jean.dalibard/publications/optexpress.pdfInternational audienceUsin...
This document has been made available through Purdue e-Pubs, a service of the Purdue University Libr...
A comprehensive model for the prediction of evaporative cooling of solid surfaces induced by the imp...
Indirect evaporative cooling an efficient and cheap way to reduce the heat load in a building. For a...
Elastic and inelastic collision-rate constants of 52Cr in the temperature range of 20 mK to 1 K are ...
We have evaporatively cooled caesium atoms in a magnetic trap to temperatures as low as 8 nK and pro...
A major challenge in particle physics detectors is to transport the heat developed in their electron...