Twenty years of gravity observations from various satellite missions have provided unique data about mass redistribution processes in the Earth system, such as melting of Greenland’s ice shields, sea level changes, ground and underground water depletion, droughts, floods, etc. The ongoing climate change underlines the urgent need to continue this kind of observations with future gravimetry missions using enhanced concepts and sensors. This paper studies the benefit of enhanced electrostatic and novel optical accelerometers and gradiometers for future gravimetry missions. One of the limiting factors in the current space gravimetry missions is the drift of the Electrostatic Accelerometers (EA) which dominates the error contribution at low...
The Next Generation Gravity Mission (NGGM), currently in a feasibility study phase as a candidate Mi...
The Gravity Recovery and Climate Experiment (GRACE) is a dedicated spaceborne mission to map the Ea...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...
Dedicated satellite gravimetry missions from the beginning of the 21-st century have provided unique...
For more than two decades, satellite gravimetry missions have provided unique data about mass redist...
Twenty years of gravity observations from the satellite missions GRACE, GOCE, GRACE-FO have provided...
Electrostatic accelerometers (EA) are one of the limiting factors of space gravimetry missions domin...
Cold Atom Interferometer (CAI) accelerometry is proposed for future generations of satellite gravime...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...
Abstract Satellite gravity missions, like GRACE and GRACE Follow-On, successfully map the Earth’s gr...
The main objective of the thesis is to identify the optimal set-up for future satellite gravimetry m...
International audienceSatellite gravity missions, like GRACE and GRACE Follow-On, successfully map t...
In the last decade, satellite gravimetry has been revealed as a pioneering technique for mapping ma...
The Gravity Recovery and Climate Experiment (GRACE) mission has been a principal contributor in the ...
Geodesic missions require precise accelerometers to improve the knowledge of the reference frame use...
The Next Generation Gravity Mission (NGGM), currently in a feasibility study phase as a candidate Mi...
The Gravity Recovery and Climate Experiment (GRACE) is a dedicated spaceborne mission to map the Ea...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...
Dedicated satellite gravimetry missions from the beginning of the 21-st century have provided unique...
For more than two decades, satellite gravimetry missions have provided unique data about mass redist...
Twenty years of gravity observations from the satellite missions GRACE, GOCE, GRACE-FO have provided...
Electrostatic accelerometers (EA) are one of the limiting factors of space gravimetry missions domin...
Cold Atom Interferometer (CAI) accelerometry is proposed for future generations of satellite gravime...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...
Abstract Satellite gravity missions, like GRACE and GRACE Follow-On, successfully map the Earth’s gr...
The main objective of the thesis is to identify the optimal set-up for future satellite gravimetry m...
International audienceSatellite gravity missions, like GRACE and GRACE Follow-On, successfully map t...
In the last decade, satellite gravimetry has been revealed as a pioneering technique for mapping ma...
The Gravity Recovery and Climate Experiment (GRACE) mission has been a principal contributor in the ...
Geodesic missions require precise accelerometers to improve the knowledge of the reference frame use...
The Next Generation Gravity Mission (NGGM), currently in a feasibility study phase as a candidate Mi...
The Gravity Recovery and Climate Experiment (GRACE) is a dedicated spaceborne mission to map the Ea...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...