We report the 1-D cooling of 85Rb atoms using a velocity-dependent optical force based upon Ramsey matter-wave interferometry. Using stimulated Raman transitions between ground hyperfine states, 12 cycles of the interferometer sequence cool a freely-moving atom cloud from 21 μK to 3 μK. This pulsed analog of continuous-wave Doppler cooling is effective at temperatures down to the recoil limit; with augmentation pulses to increase the interferometer area, it should cool more quickly than conventional methods, and be more suitable for species that lack a closed radiative transition
This thesis describes theoretical and experimental work concerning radiation forces on atoms, with p...
Scope and Method of Study: The purpose of this research was to use laser cooling techniques to cool ...
The use of atom interferometry in high-precision measurements has led to an increased interest in th...
We report the 1D cooling of Rb85 atoms using a velocity-dependent optical force based upon Ramsey ma...
Cold atom samples, at temperatures of the order 100 µK, are useful for a wide reaching array of new ...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
The production of dense samples of atoms whose translational velocity can be parameterized by temper...
Interferometric measurement of an atom’s velocity allows, by tailoring the impulse imparted by the m...
Lossless polarization gradient cooling of 4×10787Rb atoms in a far-detuned 2D optical lattice is dem...
Cold atom samples, at temperatures of the order 100 uK, are useful for a wide reaching array of new ...
Atom interferometry is a highly versatile experimental technique for precision measurement, with app...
We report simultaneous Raman sideband cooling of a single 87Rb atom and a single 133Cs atom held in ...
Subrecoil laser cooling of free atoms leads to temperatures which are limited only by the available ...
The production of dense samples of atoms whose translational velocity can be parameterized by temper...
This thesis describes theoretical and experimental work concerning radiation forces on atoms, with p...
Scope and Method of Study: The purpose of this research was to use laser cooling techniques to cool ...
The use of atom interferometry in high-precision measurements has led to an increased interest in th...
We report the 1D cooling of Rb85 atoms using a velocity-dependent optical force based upon Ramsey ma...
Cold atom samples, at temperatures of the order 100 µK, are useful for a wide reaching array of new ...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
The production of dense samples of atoms whose translational velocity can be parameterized by temper...
Interferometric measurement of an atom’s velocity allows, by tailoring the impulse imparted by the m...
Lossless polarization gradient cooling of 4×10787Rb atoms in a far-detuned 2D optical lattice is dem...
Cold atom samples, at temperatures of the order 100 uK, are useful for a wide reaching array of new ...
Atom interferometry is a highly versatile experimental technique for precision measurement, with app...
We report simultaneous Raman sideband cooling of a single 87Rb atom and a single 133Cs atom held in ...
Subrecoil laser cooling of free atoms leads to temperatures which are limited only by the available ...
The production of dense samples of atoms whose translational velocity can be parameterized by temper...
This thesis describes theoretical and experimental work concerning radiation forces on atoms, with p...
Scope and Method of Study: The purpose of this research was to use laser cooling techniques to cool ...
The use of atom interferometry in high-precision measurements has led to an increased interest in th...