We present theoretical calculations for the reflection of atoms from a magnetic surface with a sinusoidal magnetization. A fully quantum mechanical treatment is possible because the problem may be reduced to an effective one-dimensional one. Results of numerical wave-packet calculations are presented and compared with an analytical model in which the atoms separate into different internal state components which follow classical paths in different potentials
Adaptive optics for cold atoms has been experimentally realized by applying a bias magnetic field to...
We have observed momentum transfer in cesium atoms using the process of adiabatic transfer between d...
We present a study of the diffraction of cold rubidium atoms at grazing incidence from an evanescent...
An exact solution and numerical calculation of the reflection of two level atoms by atomic mirror ar...
A microscopic approach is developed to the scattering of surface states from a nonmagnetic linear de...
The problem of atom diffraction from a reflecting magnetic diffraction grating is solved in the thin...
We describe an experimentally realistic situation of the quantum reflection of helium atoms from an ...
We report on the observation of highquality reflection of ultracold atoms from grooved perpendicular...
A propagation method for the scattering of a quantum wave packet from a potential surface is present...
We report the realization of a new type of magnetostatic mirror for slowly moving atoms which compri...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
Composition du jury : C. Imbert,Président J. Dalibard, Rapporteur J. Mlynek, Rapporteur K. M\o lmer,...
We observed quantum reflection of ultracold atoms from the attractive potential of a solid surface. ...
A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigate...
We propose a new method for studying the reflection of a hydrogen atom from a superfluid-helium film...
Adaptive optics for cold atoms has been experimentally realized by applying a bias magnetic field to...
We have observed momentum transfer in cesium atoms using the process of adiabatic transfer between d...
We present a study of the diffraction of cold rubidium atoms at grazing incidence from an evanescent...
An exact solution and numerical calculation of the reflection of two level atoms by atomic mirror ar...
A microscopic approach is developed to the scattering of surface states from a nonmagnetic linear de...
The problem of atom diffraction from a reflecting magnetic diffraction grating is solved in the thin...
We describe an experimentally realistic situation of the quantum reflection of helium atoms from an ...
We report on the observation of highquality reflection of ultracold atoms from grooved perpendicular...
A propagation method for the scattering of a quantum wave packet from a potential surface is present...
We report the realization of a new type of magnetostatic mirror for slowly moving atoms which compri...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
Composition du jury : C. Imbert,Président J. Dalibard, Rapporteur J. Mlynek, Rapporteur K. M\o lmer,...
We observed quantum reflection of ultracold atoms from the attractive potential of a solid surface. ...
A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigate...
We propose a new method for studying the reflection of a hydrogen atom from a superfluid-helium film...
Adaptive optics for cold atoms has been experimentally realized by applying a bias magnetic field to...
We have observed momentum transfer in cesium atoms using the process of adiabatic transfer between d...
We present a study of the diffraction of cold rubidium atoms at grazing incidence from an evanescent...