48 citations · 133 across the 8 of their papers we have counts for
10 papers · 1 filter
CARIOQA: Definition of a Quantum Pathfinder Mission
T. Lévèque, C. Fallet, J. Lefebve +12
A strong potential gain for space applications is expected from the anticipated performances of inertial sensors based on cold atom interferometry (CAI) that measure the accelerati…
Tracking the Vector Acceleration with a Hybrid Quantum Accelerometer Triad
Simon Templier, Pierrick Cheiney, Quentin d'Armagnac de Castanet +6
Robust and accurate acceleration tracking remains a challenge in many fields. For geophysics and economic geology, precise gravity mapping requires onboard sensors combined with ac…
Gravity Field Mapping Using Laser Coupled Quantum Accelerometers in Space
T. Lévèque, C. Fallet, M. Mandea +9
The emergence of quantum technologies, including cold atom based accelerometers, offers an opportunity to improve the performances of space geodesy missions. In this context, CNES…
A fibered laser system for the MIGA large scale atom interferometer
D. O. Sabulsky, J. Junca, G. Lefèvre +12
We describe the realization and characterization of a compact, autonomous fiber laser system that produces the optical frequencies required for laser cooling, trapping, manipulatio…
Loading and Cooling in an Optical Trap via Hyperfine Dark States
D. S. Naik, H. Eneriz-Imaz, M. Carey +5
We present a novel optical cooling scheme that relies on hyperfine dark states to enhance loading and cooling atoms inside deep optical dipole traps. We demonstrate a seven-fold in…
All-Optical Bose-Einstein Condensates in Microgravity
Gabriel Condon, Martin Rabault, Brynle Barrett +8
We report on the all-optical production of Bose-Einstein condensates in microgravity using a combination of grey molasses cooling, light-shift engineering and optical trapping in a…