International audienceWe report on the implementation of ultracold atoms as a source in a state of the art atom gravimeter. We perform gravity measurements with 10 nm/s 2 statistical uncertainties in a so-far unexplored temperature range for such a high accuracy sensor, down to 50 nK. This allows for an improved characterization of the most limiting systematic effect, related to wavefront aberrations of light beam splitters. A thorough model of the impact of this effect onto the measurement is developed and a method is proposed to correct for this bias based on the extrapolation of the measurements down to zero temperature. Finally, an uncertainty of 13 nm/s 2 is obtained in the evaluation of this systematic effect, which can be improved fu...
Atom interferometers have been shown to be very stable and accurate sensors for acceleration and rot...
Cette thèse a pour objectif l’amélioration de l’exactitude du gravimètre atomique du LNE-SYRTE. Ce g...
International audienceThe research on cold-atom interferometers gathers a large community of about 5...
International audienceWe report on the implementation of ultracold atoms as a source in a state of t...
We present a synthetic view of experiments we are performing using atom interferometry to determine ...
This thesis aims to improve the accuracy of the Cold Atom Gravimeter from LNESYRTE.This gravimeter e...
International audienceGravity measurements are performed with two different classes ofinstruments: g...
Transportable quantum sensors become more common especially in gravimetry and measurements on longer...
Atom interferometers have demonstrated a high sensitivity to inertial forces. This enables their app...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
A light-pulse atom interferometer for inertial sensing applications such as gravimetry is being comm...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
Atom interferometers have been shown to be very stable and accurate sensors for acceleration and rot...
Cette thèse a pour objectif l’amélioration de l’exactitude du gravimètre atomique du LNE-SYRTE. Ce g...
International audienceThe research on cold-atom interferometers gathers a large community of about 5...
International audienceWe report on the implementation of ultracold atoms as a source in a state of t...
We present a synthetic view of experiments we are performing using atom interferometry to determine ...
This thesis aims to improve the accuracy of the Cold Atom Gravimeter from LNESYRTE.This gravimeter e...
International audienceGravity measurements are performed with two different classes ofinstruments: g...
Transportable quantum sensors become more common especially in gravimetry and measurements on longer...
Atom interferometers have demonstrated a high sensitivity to inertial forces. This enables their app...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
A light-pulse atom interferometer for inertial sensing applications such as gravimetry is being comm...
International audienceThe accuracy and precision of current atom-interferometric inertialsensors riv...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
Atom interferometers have been shown to be very stable and accurate sensors for acceleration and rot...
Cette thèse a pour objectif l’amélioration de l’exactitude du gravimètre atomique du LNE-SYRTE. Ce g...
International audienceThe research on cold-atom interferometers gathers a large community of about 5...