Quantum sensors based on atom interferometers can provide measurements of inertial quantities with unprecedented accuracy and precision. It has been suggested that this sea change in sensing could provide an inertial navigation capability that is comparable with current satellite based navigation systems. However, the accuracy of sensor measurements is not the only factor that limits the accuracy of inertial navigation systems. In this paper, we explore the fundamental limits to inertial navigation, and explain how quantum inertial sensors could be used to alleviate some of the problems encountered in current classical inertial navigation systems, but not to solve the fundamental instability inherent in inertial navigation methods.</jats:p
International audienceWe report the operation of a cold-atom inertial sensor which continuously capt...
Since the first proof-of-principle experiments over 25 years ago, atom interferometry has matured to...
The spirit of the shared laboratory iXatom, involving the collaboration between the laboratoire phot...
Inertial sensing based on cold atom technologies has been proposed as a possible answer to the limit...
We present an alternative technique for estimating the response of a cold atom interferometer (CAI)....
Positioning currently relies heavily on Global Navigation Satellite Systems (GNSS). Combined with c...
This paper proposes a position fixing method for autonomous navigation using partial gravity gradie...
International audienceRecent developments in quantum technology have resulted in a new generation of...
This article discusses chances and challenges of using cold atom interferometers in inertial navigat...
International audienceThe research on cold-atom interferometers gathers a large community of about 5...
The past three decades have shown dramatic progress in the ability to manipulate and coherently cont...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceDevelopments in atom interferometry have led to atomic inertial sensors with e...
Matter-wave inertial sensing relies on the capability of manipulating the coherent wave nature of ma...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceWe report the operation of a cold-atom inertial sensor which continuously capt...
Since the first proof-of-principle experiments over 25 years ago, atom interferometry has matured to...
The spirit of the shared laboratory iXatom, involving the collaboration between the laboratoire phot...
Inertial sensing based on cold atom technologies has been proposed as a possible answer to the limit...
We present an alternative technique for estimating the response of a cold atom interferometer (CAI)....
Positioning currently relies heavily on Global Navigation Satellite Systems (GNSS). Combined with c...
This paper proposes a position fixing method for autonomous navigation using partial gravity gradie...
International audienceRecent developments in quantum technology have resulted in a new generation of...
This article discusses chances and challenges of using cold atom interferometers in inertial navigat...
International audienceThe research on cold-atom interferometers gathers a large community of about 5...
The past three decades have shown dramatic progress in the ability to manipulate and coherently cont...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceDevelopments in atom interferometry have led to atomic inertial sensors with e...
Matter-wave inertial sensing relies on the capability of manipulating the coherent wave nature of ma...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceWe report the operation of a cold-atom inertial sensor which continuously capt...
Since the first proof-of-principle experiments over 25 years ago, atom interferometry has matured to...
The spirit of the shared laboratory iXatom, involving the collaboration between the laboratoire phot...