activity
20052014
most citedStability comparison of two absolute gravimeters: optical versus atomic interferometers

185 citations · 368 across the 5 of their papers we have counts for

collaborators

9 papers

physics.atom-ph2014★ 43 cited

A simple laser system for atom interferometry

Sébastien Merlet, Laurent Volodimer, Michel Lours +1

We present here a simple laser system for a laser cooled atom interferometer, where all functions (laser cooling, interferometry and detection) are realized using only two extended…

physics.atom-ph2014★ 185 cited

Stability comparison of two absolute gravimeters: optical versus atomic interferometers

Pierre Gillot, Olivier Francis, Arnaud Landragin +2

We report the direct comparison between the stabilities of two mobile absolute gravimeters of different technology: the LNE-SYRTE Cold Atom Gravimeter and FG5X\#216 of the Universi…

physics.atom-ph2014★ 1 cited

Underground operation at best sensitivity of the mobile LNE-SYRTE Cold Atom Gravimeter

Tristan Farah, Christine Guerlin, Arnaud Landragin +4

Low noise underground environments offer conditions allowing to assess ultimate performance of high sensitivity sensors such as accelerometers, gyrometers, seismometers... Such fac…

physics.atom-ph2011

Perturbations of the local gravity field due to mass distribution on precise measuring instruments: a numerical method applied to a cold atom gravimeter

G. D'Agostino, S. Merlet, A. Landragin +1

We present a numerical method, based on a FEM simulation, for the determination of the gravitational field generated by massive objects, whatever geometry and space mass density th…

physics.atom-ph2010★ 137 cited

Comparison between two mobile absolute gravimeters: optical versus atomic interferometers

S. Merlet, Q. Bodart, N. Malossi +4

We report a comparison between two absolute gravimeters: the LNE-SYRTE cold atoms gravimeter and FG5#220 of Leibniz Universität of Hannover. They rely on different principles of op…

physics.space-ph2010★ 2 cited

SAI: a compact atom interferometer for future space missions

Fiodor Sorrentino, Kai Bongs, Philippe Bouyer +25

Atom interferometry represents a quantum leap in the technology for the ultra-precise monitoring of accelerations and rotations and, therefore, for all the science that relies on t…