We have demonstrated that a cobalt single crystal can be used to make a remarkably smooth retro-reflector for cold paramagnetic atoms. The crystal is cut so that its surface lies in he (0001) plane and the atoms are reflected by the magnetic field above the surface due to the self-organized pattern of magnetic domains in the material. We find that the reflectivity for suitably polarized atoms exceeds 90% and may well be unity. We use the angular spread of a reflected atom cloud to measure the roughness of the mirror. We find that the angular variation of the equivalent hard reflecting surface is (3:1 0:3degrees)rms for atoms dropped onto the mirror from a height of 2 cm
A parabolic electromagnetic reflector for slow cesium atoms is studied experimentally. This atomic m...
A flexible and relatively simple and cheap optical dipole mirror for cold rubidium atoms from magnet...
We present a study of the diffraction of cold rubidium atoms at grazing incidence from an evanescent...
We describe the fabrication of an atom mirror by etching of a common hard drive, and we report the o...
We describe the fabrication of an atom mirror by etching of a common hard drive, and we report the o...
Advances in laser cooling techniques have made it possible to prepare atomic samples with temperatur...
We report the results from a series of experiments in which ferromagnetic thin films were used as at...
Adaptive optics for cold atoms has been experimentally realized by applying a bias magnetic field to...
We report the realization of a new type of magnetostatic mirror for slowly moving atoms which compri...
Available from British Library Document Supply Centre-DSC:DXN023735 / BLDSC - British Library Docume...
We report on the observation of highquality reflection of ultracold atoms from grooved perpendicular...
There is a need in atom optics and atom interferometry for high quality atomic mirrors and beamsplit...
A corrugated magnetic reflector is realized by adding a bias field to a static magnetic mirror. This...
Cryogenically cooled microelectromagnet mirrors were used to reflect a cloud of free-falling laser-c...
Reflective atom optics has been experimentally realized with a continuous flux of cold atoms by usin...
A parabolic electromagnetic reflector for slow cesium atoms is studied experimentally. This atomic m...
A flexible and relatively simple and cheap optical dipole mirror for cold rubidium atoms from magnet...
We present a study of the diffraction of cold rubidium atoms at grazing incidence from an evanescent...
We describe the fabrication of an atom mirror by etching of a common hard drive, and we report the o...
We describe the fabrication of an atom mirror by etching of a common hard drive, and we report the o...
Advances in laser cooling techniques have made it possible to prepare atomic samples with temperatur...
We report the results from a series of experiments in which ferromagnetic thin films were used as at...
Adaptive optics for cold atoms has been experimentally realized by applying a bias magnetic field to...
We report the realization of a new type of magnetostatic mirror for slowly moving atoms which compri...
Available from British Library Document Supply Centre-DSC:DXN023735 / BLDSC - British Library Docume...
We report on the observation of highquality reflection of ultracold atoms from grooved perpendicular...
There is a need in atom optics and atom interferometry for high quality atomic mirrors and beamsplit...
A corrugated magnetic reflector is realized by adding a bias field to a static magnetic mirror. This...
Cryogenically cooled microelectromagnet mirrors were used to reflect a cloud of free-falling laser-c...
Reflective atom optics has been experimentally realized with a continuous flux of cold atoms by usin...
A parabolic electromagnetic reflector for slow cesium atoms is studied experimentally. This atomic m...
A flexible and relatively simple and cheap optical dipole mirror for cold rubidium atoms from magnet...
We present a study of the diffraction of cold rubidium atoms at grazing incidence from an evanescent...