We describe a simple experimental technique which allows us to store a small and deterministic number of neutral atoms in an optical dipole trap. The desired atom number is prepared in a magneto-optical trap overlapped with a single focused Nd:YAG laser beam. Dipole trap loading efficiency of 100% and storage times of about one minute have been achieved. We have also prepared atoms in a certain hyperfine state and demonstrated the feasibility of a state-selective detection via resonance fluorescence at the level of a few neutral atoms. A spin relaxation time of the polarized sample of 4.2 +/- 0.7 a has been measured. Possible applications are briefly discussed
The aim of this research is to pave the way for making a trap for cold neutral atoms based on the fo...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
We trap a single cesium atom in a standing-wave optical dipole trap. Special experimental procedures...
We describe a simple experimental technique which allows us to store a small and deterministic numbe...
We present a brief overview of optical trapping experiments of individual neutral atoms. Then we des...
We present a brief overview of optical trapping experiments of individual neutral atoms. Then we des...
This thesis presents experiments concerning the preparation and manipula-tion of single neutral atom...
Abstract. We have built a new apparatus in order to manipulate single 87Rb atoms for quantum computi...
The subject of this review are atom traps based on optical dipole forces in laser fields, along with...
We report the realization of a deterministic source of single atoms. A standing-wave dipole trap is ...
We trap a single cesium atom in a standing-wave optical dipole trap. Special experimental procedures...
We report the realization of a deterministic source of single atoms. A standing-wave dipole trap is ...
We report the realization of a deterministic source of single atoms. A standing-wave dipole trap is ...
SIGLEAvailable from TIB Hannover: RO 6920(1998,44) / FIZ - Fachinformationszzentrum Karlsruhe / TIB ...
The aim of this research is to pave the way for making a trap for cold neutral atoms based on the fo...
The aim of this research is to pave the way for making a trap for cold neutral atoms based on the fo...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
We trap a single cesium atom in a standing-wave optical dipole trap. Special experimental procedures...
We describe a simple experimental technique which allows us to store a small and deterministic numbe...
We present a brief overview of optical trapping experiments of individual neutral atoms. Then we des...
We present a brief overview of optical trapping experiments of individual neutral atoms. Then we des...
This thesis presents experiments concerning the preparation and manipula-tion of single neutral atom...
Abstract. We have built a new apparatus in order to manipulate single 87Rb atoms for quantum computi...
The subject of this review are atom traps based on optical dipole forces in laser fields, along with...
We report the realization of a deterministic source of single atoms. A standing-wave dipole trap is ...
We trap a single cesium atom in a standing-wave optical dipole trap. Special experimental procedures...
We report the realization of a deterministic source of single atoms. A standing-wave dipole trap is ...
We report the realization of a deterministic source of single atoms. A standing-wave dipole trap is ...
SIGLEAvailable from TIB Hannover: RO 6920(1998,44) / FIZ - Fachinformationszzentrum Karlsruhe / TIB ...
The aim of this research is to pave the way for making a trap for cold neutral atoms based on the fo...
The aim of this research is to pave the way for making a trap for cold neutral atoms based on the fo...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
We trap a single cesium atom in a standing-wave optical dipole trap. Special experimental procedures...