International audienceA trapped atom interferometer involving state-selective adiabatic potentials with two microwave frequencies on a chip is proposed. We show that this configuration provides a way to achieve a high degree of symmetry between the two arms of the interferometer, which is necessary for coherent splitting and recombination of thermal (i.e., noncondensed) atoms. The resulting interferometer holds promise to achieve high contrast and long coherence time, while avoiding the mean-field interaction issues of interferometers based on trapped Bose-Einstein condensates
We have fabricated and tested an atom chip that operates as a matter wave interferometer. In this co...
Atom interferometers using Bose-Einstein condensate that is confined in a waveguide and manipulated ...
An atom Michelson interferometer is implemented on an “atom chip.” The chip uses lithographically pa...
International audienceA trapped atom interferometer involving state-selective adiabatic potentials w...
International audienceSummary form only given. Atom chips [1] have shown to be very successful for t...
In this thesis, we report the theoretical study of an atom interferometer using thermal (i.e. non co...
International audienceWe propose a novel and robust technique to realize a beam splitter for trapped...
International audienceWe discuss the possibility of building a matter wave interferometer using ther...
In this manuscript we report the theoretical and experimental developments, in progress at TRT, aimi...
Atom trapping on chip opens new perspectives for time and frequency metrology and integrated atom in...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
Matter-wave interferometry is a powerful tool for high-precision measurements of the quantum propert...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
This thesis presents progress in developing a trapped atom interferometer on a chip, based on AC Zee...
During this thesis a novel trapping and manipulation technique for neutral atoms on atom chips has b...
We have fabricated and tested an atom chip that operates as a matter wave interferometer. In this co...
Atom interferometers using Bose-Einstein condensate that is confined in a waveguide and manipulated ...
An atom Michelson interferometer is implemented on an “atom chip.” The chip uses lithographically pa...
International audienceA trapped atom interferometer involving state-selective adiabatic potentials w...
International audienceSummary form only given. Atom chips [1] have shown to be very successful for t...
In this thesis, we report the theoretical study of an atom interferometer using thermal (i.e. non co...
International audienceWe propose a novel and robust technique to realize a beam splitter for trapped...
International audienceWe discuss the possibility of building a matter wave interferometer using ther...
In this manuscript we report the theoretical and experimental developments, in progress at TRT, aimi...
Atom trapping on chip opens new perspectives for time and frequency metrology and integrated atom in...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
Matter-wave interferometry is a powerful tool for high-precision measurements of the quantum propert...
Interferometry with trapped atomic Bose-Einstein condensates (BECs) requires the development of tech...
This thesis presents progress in developing a trapped atom interferometer on a chip, based on AC Zee...
During this thesis a novel trapping and manipulation technique for neutral atoms on atom chips has b...
We have fabricated and tested an atom chip that operates as a matter wave interferometer. In this co...
Atom interferometers using Bose-Einstein condensate that is confined in a waveguide and manipulated ...
An atom Michelson interferometer is implemented on an “atom chip.” The chip uses lithographically pa...