Collisions between tightly confined atoms can lead to ionization and hence to loss of atoms from the trap. We develop second-order perturbation theory for a tensorial perturbation of a spherically symmetric system and the theory is then applied to processes mediated by the spin–dipole interaction. Redistribution and loss mechanisms are studied for the case of spin-polarized metastable helium atoms and results obtained for the five lowest s states in the trap and trapping frequencies ranging from 1 kHz to 10 MHz
International audienceWe present a general semi-classical treatment of the depolarization of spheric...
We have experimentally studied the magnetic-field dependence of the decay of a Bose-Einstein condens...
The thematics treated in this manuscript illustrate two specificities of ultracold metastable Helium...
Collisions between tightly confined atoms can lead to ionization and hence to loss of atoms from the...
Collisions between tightly confined atoms can lead to ionization and hence to loss of atoms from the...
We analyze a system of two colliding ultracold atoms under strong harmonic confinement from the view...
In an ultracold, optically trapped mixture of Rb-87 and metastable triplet He-4 atoms we have studie...
Spin-dipole mediated interactions between tightly confined metastable helium atoms couple the spin-p...
We present a theoretical and experimental investigation of homonuclear ionizing collisions of laser-...
A quantum-mechanical close-coupled calculation of field-free collisions of cold metastable helium at...
This paper investigates the possibility of suppressing the ionization rate in a magnetostatic trap o...
The electron spin dependence of reactions involving helium metastable atoms is investigated using op...
Scattering and ionizing cross sections and rates are calculated for ultracold collisions between met...
We have studied the optical collisions of cold, metastable helium atoms in a magneto-optical trap. ...
This thesis describes our investigation into elastic collisions between an ultra-cold, magnetically ...
International audienceWe present a general semi-classical treatment of the depolarization of spheric...
We have experimentally studied the magnetic-field dependence of the decay of a Bose-Einstein condens...
The thematics treated in this manuscript illustrate two specificities of ultracold metastable Helium...
Collisions between tightly confined atoms can lead to ionization and hence to loss of atoms from the...
Collisions between tightly confined atoms can lead to ionization and hence to loss of atoms from the...
We analyze a system of two colliding ultracold atoms under strong harmonic confinement from the view...
In an ultracold, optically trapped mixture of Rb-87 and metastable triplet He-4 atoms we have studie...
Spin-dipole mediated interactions between tightly confined metastable helium atoms couple the spin-p...
We present a theoretical and experimental investigation of homonuclear ionizing collisions of laser-...
A quantum-mechanical close-coupled calculation of field-free collisions of cold metastable helium at...
This paper investigates the possibility of suppressing the ionization rate in a magnetostatic trap o...
The electron spin dependence of reactions involving helium metastable atoms is investigated using op...
Scattering and ionizing cross sections and rates are calculated for ultracold collisions between met...
We have studied the optical collisions of cold, metastable helium atoms in a magneto-optical trap. ...
This thesis describes our investigation into elastic collisions between an ultra-cold, magnetically ...
International audienceWe present a general semi-classical treatment of the depolarization of spheric...
We have experimentally studied the magnetic-field dependence of the decay of a Bose-Einstein condens...
The thematics treated in this manuscript illustrate two specificities of ultracold metastable Helium...