Photoionization of a cold atomic sample offers intriguing possibilities for observing collective effects at extremely low temperatures. Irradiation of a rubidium condensate and of cold rubidium atoms within a magneto-optical trap (MOT) with laser pulses ionizing through one-photon and two-photon absorption processes was performed. Losses and modifications in the density profile of the remaining trapped cold cloud or the remaining condensate sample were examined as functions of the ionizing laser parameters. Ionization cross sections were measured for atoms in a MOT, while in magnetic traps losses larger than those expected for ionization process were measured
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
A simple two-photon two-color, one resonant, scheme is applied to photoionize Cs atoms belonging to ...
A two element magneto-optical trap (MOT) for Na and Li-7 or Li-6 is used to cool and trap each of th...
Photoionization of a cold atomic sample offers intriguing possibilities to observe collective effect...
Photoionization of a cold atomic sample offers intriguing possibilities to observe collective effect...
We carry out photoionization experiments on laser-cooled alkali atoms by irradiating rubidium and ce...
We demonstrate photoionization spectroscopy in cold rubidium atoms trapped in a working magneto-opt...
Photoionization of Bose-Einstein condensates is an interesting topic at the interface between plasma...
International audienceTwo-photon ionization of Rubidium atoms in a magneto-optical trap and a Bose-E...
In a Magneto-Optical Trap (MOT), realized for the first time in 1987, one can trap and cool neutral ...
Two-photon ionization of rubidium atoms in a magneto-optical trap and a Bose–Einstein condensate (BE...
Measurements of the temperature dependence of trap loss collisions of laser-cooled rubidium atoms ar...
Rydberg atoms are those which have their valence electron excited to high principal quantum number n...
A detailed experimental and theoretical investigation of a magneto-optical trap for caesium atoms is...
Losses from a cesium magneto-optical trap induced by an additional laser ionizing the atoms in the 6...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
A simple two-photon two-color, one resonant, scheme is applied to photoionize Cs atoms belonging to ...
A two element magneto-optical trap (MOT) for Na and Li-7 or Li-6 is used to cool and trap each of th...
Photoionization of a cold atomic sample offers intriguing possibilities to observe collective effect...
Photoionization of a cold atomic sample offers intriguing possibilities to observe collective effect...
We carry out photoionization experiments on laser-cooled alkali atoms by irradiating rubidium and ce...
We demonstrate photoionization spectroscopy in cold rubidium atoms trapped in a working magneto-opt...
Photoionization of Bose-Einstein condensates is an interesting topic at the interface between plasma...
International audienceTwo-photon ionization of Rubidium atoms in a magneto-optical trap and a Bose-E...
In a Magneto-Optical Trap (MOT), realized for the first time in 1987, one can trap and cool neutral ...
Two-photon ionization of rubidium atoms in a magneto-optical trap and a Bose–Einstein condensate (BE...
Measurements of the temperature dependence of trap loss collisions of laser-cooled rubidium atoms ar...
Rydberg atoms are those which have their valence electron excited to high principal quantum number n...
A detailed experimental and theoretical investigation of a magneto-optical trap for caesium atoms is...
Losses from a cesium magneto-optical trap induced by an additional laser ionizing the atoms in the 6...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
A simple two-photon two-color, one resonant, scheme is applied to photoionize Cs atoms belonging to ...
A two element magneto-optical trap (MOT) for Na and Li-7 or Li-6 is used to cool and trap each of th...