Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of metastable (2 S3) helium atoms, produced in a hollow cathode dc discharge, is collimated and subsequently focused using Doppler cooling of the 2 S13 -2 P23 transition at 1083 nm, forming an intense probe of up to 1× 1012 atoms s-1 cm-2. The large distance (2.5 m) between source and sample means that the beam is relatively free of UV photons and 2 S1 metastable atoms, removing the need for quench lamps and chopper wheels. As well as providing a clean high intensity source, the well defined nature of the beam is a necessary step towards using more sophisticated laser-cooling techniques with the ultimate aim of producing a metastable helium micr...
Quenching of metastable antiprotonic helium atoms in collisions with deuterium molecules has been st...
This article presents a new experiment aiming at BEC of metastable helium atoms. It describes the de...
Intense, highly collimated sources of atoms have many potential applications. Bright beams will be i...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
A Bose-Einstein condensation experiment is used to create ultracold metastable helium (23S1) atoms w...
Previous experiments have shown that Metastable De-excitation Spectroscopy (MDS) provides a valuable...
The PiHe collaboration is currently attempting to carry out laser spectroscopy of metastable pionic ...
The velocities of atoms can be manipulated by near-resonant laser light. After many absorption-spon...
The high velocity of free atoms associated with the thermal motion, together with the velocity distr...
Radiation pressure on metastable helium atoms can be increased by an order of magnitude using the co...
This article presents a new experiment aiming at BEC of metastable helium atoms. It describes the de...
Quenching of metastable antiprotonic helium atoms in collisions with deuterium molecules has been st...
This article presents a new experiment aiming at BEC of metastable helium atoms. It describes the de...
Intense, highly collimated sources of atoms have many potential applications. Bright beams will be i...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
Details of a new approach for performing metastable de-excitation spectroscopy are given. A beam of ...
A Bose-Einstein condensation experiment is used to create ultracold metastable helium (23S1) atoms w...
Previous experiments have shown that Metastable De-excitation Spectroscopy (MDS) provides a valuable...
The PiHe collaboration is currently attempting to carry out laser spectroscopy of metastable pionic ...
The velocities of atoms can be manipulated by near-resonant laser light. After many absorption-spon...
The high velocity of free atoms associated with the thermal motion, together with the velocity distr...
Radiation pressure on metastable helium atoms can be increased by an order of magnitude using the co...
This article presents a new experiment aiming at BEC of metastable helium atoms. It describes the de...
Quenching of metastable antiprotonic helium atoms in collisions with deuterium molecules has been st...
This article presents a new experiment aiming at BEC of metastable helium atoms. It describes the de...
Intense, highly collimated sources of atoms have many potential applications. Bright beams will be i...