International audienceWe present our the construction of an atom interferometer for inertial sensing in microgravity, as part of the I.C.E. (\textit{Interf\'{e}rom\'{e}trie Coh\'{e}rente pour l'Espace}) collaboration. On-board laser systems have been developed based on fibre-optic components, which are insensitive to mechanical vibrations and acoustic noise, have sub-MHz linewidth, and remain frequency stabilised for weeks at a time. A compact, transportable vacuum system has been built, and used for laser cooling and magneto-optical trapping. We will use a mixture of quantum degenerate gases, bosonic $^{87}$Rb and fermionic $^{40}$K, in order to find the optimal conditions for precision and sensitivity of inertial measurements. Microgravit...
In this thesis, we report on the study of atomic sources for long-time-of-flight inertial sensing, a...
In this thesis, we report on the study of atomic sources for long-time-of-flight inertial sensing, a...
none28Atom interferometry represents a quantum leap in the technology for the ultraprecise monitorin...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
Abstract We present our the construction of an atom interferometer for inertial sensing in micrograv...
International audienceAtom interferometry has hugely benefitted from advances made in cold atom phys...
International audienceAtom interferometry has hugely benefitted from advances made in cold atom phys...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
This thesis reports the study of a matter-wave accelerometer operated aboard a 0-g plane in ballist...
In this thesis, we report on the study of atomic sources for long-time-of-flight inertial sensing, a...
In this thesis, we report on the study of atomic sources for long-time-of-flight inertial sensing, a...
none28Atom interferometry represents a quantum leap in the technology for the ultraprecise monitorin...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
Abstract We present our the construction of an atom interferometer for inertial sensing in micrograv...
International audienceAtom interferometry has hugely benefitted from advances made in cold atom phys...
International audienceAtom interferometry has hugely benefitted from advances made in cold atom phys...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
This thesis reports the study of a matter-wave accelerometer operated aboard a 0-g plane in ballist...
In this thesis, we report on the study of atomic sources for long-time-of-flight inertial sensing, a...
In this thesis, we report on the study of atomic sources for long-time-of-flight inertial sensing, a...
none28Atom interferometry represents a quantum leap in the technology for the ultraprecise monitorin...