The calculated upper limit Kipol state is used as input to investigate the prospects for achieving Bose-Einstein condensation (BEC). The heating rate of the trap population by secondary collisions of the hot products of the process of ionization—i.e., ground-state atoms, ions, and dimer-ions—with cold trapped metastable atoms is discussed in terms of a semiclassical model. An important step lies in limiting the depth of the magnetic trap to a value of a few millikelvin, to limit the range of small-angle scattering that contributes to heating. Also, a tight radial confinement reduces the probability for secondary collisions. At a trap depth of 10 mK, a radial dimension of 3µm, and a density of 2×1013cm-3 the heating rate is 1.4µK/s, which sh...
This paper investigates the possibility of suppressing the ionization rate in a magnetostatic trap o...
Bose-Einstein condensation (BEC) in a atomic cesium gas prepared in a “low field seeker” Zeeman subl...
Bose-Einstein condensation (BEC) of an ideal gas is investigated for a finite number of particles. I...
The calculated upper limit Kipol state is used as input to investigate the prospects for achieving B...
The successful Bose-Einstein Condensation (BEC) of alkali atoms has stimulated several groups to ext...
In this thesis, the study of cold gases of neon atoms in different metastable states is described. I...
A sample of caesium atoms in the F=3, m_F=-3 ground state was evaporatively cooled in a Time-Orbitin...
We present an experimental study of the loading of a magneto-optical trap (MOT) from a brightened an...
We present an experimental study of the loading of a magneto-optical trap (MOT) from a brightened an...
We present an experimental study of the loading of a magneto-optical trap (MOT) from a brightened an...
We report the creation of a Bose-Einstein condensate using buffer-gas cooling, the first realization...
The construction of an apparatus capable of producing Bose-Einstein condensates marks a significant ...
We have produced a Bose-Einstein condensate of metastable helium (He*4) containing over 1.5× 107 ato...
Using a novel magnetic trapping geometry we have evaporatively cooled metastable helium atoms to for...
Using magnetically trapped atomic hydrogen as an example, we investigate the prospects of achieving ...
This paper investigates the possibility of suppressing the ionization rate in a magnetostatic trap o...
Bose-Einstein condensation (BEC) in a atomic cesium gas prepared in a “low field seeker” Zeeman subl...
Bose-Einstein condensation (BEC) of an ideal gas is investigated for a finite number of particles. I...
The calculated upper limit Kipol state is used as input to investigate the prospects for achieving B...
The successful Bose-Einstein Condensation (BEC) of alkali atoms has stimulated several groups to ext...
In this thesis, the study of cold gases of neon atoms in different metastable states is described. I...
A sample of caesium atoms in the F=3, m_F=-3 ground state was evaporatively cooled in a Time-Orbitin...
We present an experimental study of the loading of a magneto-optical trap (MOT) from a brightened an...
We present an experimental study of the loading of a magneto-optical trap (MOT) from a brightened an...
We present an experimental study of the loading of a magneto-optical trap (MOT) from a brightened an...
We report the creation of a Bose-Einstein condensate using buffer-gas cooling, the first realization...
The construction of an apparatus capable of producing Bose-Einstein condensates marks a significant ...
We have produced a Bose-Einstein condensate of metastable helium (He*4) containing over 1.5× 107 ato...
Using a novel magnetic trapping geometry we have evaporatively cooled metastable helium atoms to for...
Using magnetically trapped atomic hydrogen as an example, we investigate the prospects of achieving ...
This paper investigates the possibility of suppressing the ionization rate in a magnetostatic trap o...
Bose-Einstein condensation (BEC) in a atomic cesium gas prepared in a “low field seeker” Zeeman subl...
Bose-Einstein condensation (BEC) of an ideal gas is investigated for a finite number of particles. I...