https://pro.college-de-france.fr/jean.dalibard/publi3/europhys\₉3.pdfInternational audienceWe present a quantum treatment of Sisyphus cooling in two dimensions. The steady state is given by the populations of the energy eigenstates for the atomic motion in the potential created by the atom-light interaction. In addition to characterizing the momentum and position distributions, we show that resonant tunnelling between adjacent optical potential wells leads to a sizable variation of the lowest-energy state population, as a function of the field parameters
We study the tunnelling of a two-level atom in a double well potential while the atom is coupled to ...
We report computational results for the time evolution of the velocity distribution P(V,t) for two-l...
We study the dynamics of the cooling of a gas of caesium atoms in an optical lattice, both experimen...
https://pro.college-de-france.fr/jean.dalibard/publi3/europhys\₉3.pdfInternational audienceWe presen...
https://pro.college-de-france.fr/jean.dalibard/publications/2Dcool94.pdfInternational audienceWe pre...
We have applied the method of single atom trajectories to study the mechanism behind some cooling s...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
https://pro.college-de-france.fr/jean.dalibard/publi2/europhys\₉1.pdfInternational audienceWe presen...
https://pro.college-de-france.fr/jean.dalibard/publi2/europhys\₉1.pdfInternational audienceWe presen...
Publisher: Optica Publishing GroupInternational audienceCooling that results from optical dipole for...
Publisher: Optica Publishing GroupInternational audienceCooling that results from optical dipole for...
We study the tunnelling of a two-level atom in a double well potential while the atom is coupled to ...
We extend the theory for laser cooling in a near-resonant optical lattice to include multiple excit...
The force acting on a two-level atom in a low-intensity standing laser wave is calculated. On accoun...
We study the tunnelling of a two-level atom in a double well potential while the atom is coupled to ...
We report computational results for the time evolution of the velocity distribution P(V,t) for two-l...
We study the dynamics of the cooling of a gas of caesium atoms in an optical lattice, both experimen...
https://pro.college-de-france.fr/jean.dalibard/publi3/europhys\₉3.pdfInternational audienceWe presen...
https://pro.college-de-france.fr/jean.dalibard/publications/2Dcool94.pdfInternational audienceWe pre...
We have applied the method of single atom trajectories to study the mechanism behind some cooling s...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
https://pro.college-de-france.fr/jean.dalibard/publi2/europhys\₉1.pdfInternational audienceWe presen...
https://pro.college-de-france.fr/jean.dalibard/publi2/europhys\₉1.pdfInternational audienceWe presen...
Publisher: Optica Publishing GroupInternational audienceCooling that results from optical dipole for...
Publisher: Optica Publishing GroupInternational audienceCooling that results from optical dipole for...
We study the tunnelling of a two-level atom in a double well potential while the atom is coupled to ...
We extend the theory for laser cooling in a near-resonant optical lattice to include multiple excit...
The force acting on a two-level atom in a low-intensity standing laser wave is calculated. On accoun...
We study the tunnelling of a two-level atom in a double well potential while the atom is coupled to ...
We report computational results for the time evolution of the velocity distribution P(V,t) for two-l...
We study the dynamics of the cooling of a gas of caesium atoms in an optical lattice, both experimen...