Abstract Satellite gravity missions, like GRACE and GRACE Follow-On, successfully map the Earth’s gravity field and its change over time. With the addition of the laser ranging interferometer (LRI) to GRACE-FO, a significant improvement over GRACE for inter-satellite ranging was achieved. One of the limiting factors is the accelerometer for measuring the non-gravitational forces acting on the satellite. The classical electrostatic accelerometers are affected by a drift at low frequencies. This drawback can be counterbalanced by adding an accelerometer based on cold atom interferometry (CAI) due to its high long-term stability. The CAI concept has already been successfully demonstrated in ground experiments and is expected to show an even hi...
International audienceThe prospects of future satellite gravimetry missions to sustain a continuous ...
Both GRACE and GOCE have proven to be very successful missions, providing a wealth of data which are...
Cold Atom Interferometry (CAI) is a promising new technology for gravity missions, enabling measurem...
Abstract Satellite gravity missions, like GRACE and GRACE Follow-On, successfully map the Earth’s gr...
International audienceSatellite gravity missions, like GRACE and GRACE Follow-On, successfully map t...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...
Cold Atom Interferometer (CAI) accelerometry is proposed for future generations of satellite gravime...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...
Proof-of-principle demonstrations have been made for cold atom interferometer (CAI) sensors. Using C...
The success of GRACE-FO and its predecessors has demonstrated the benefits of satellite gravimetry f...
For more than two decades, satellite gravimetry missions have provided unique data about mass redist...
10Both GRACE and GOCE have proven to be very successful missions, providing a wealth of data which ...
International audienceThe prospects of future satellite gravimetry missions to sustain a continuous ...
Both GRACE and GOCE have proven to be very successful missions, providing a wealth of data which are...
Cold Atom Interferometry (CAI) is a promising new technology for gravity missions, enabling measurem...
Abstract Satellite gravity missions, like GRACE and GRACE Follow-On, successfully map the Earth’s gr...
International audienceSatellite gravity missions, like GRACE and GRACE Follow-On, successfully map t...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...
Cold Atom Interferometer (CAI) accelerometry is proposed for future generations of satellite gravime...
Cold Atom Interferometry (CAI) has proven to be a very efficient technique to achieve high sensitivi...
Proof-of-principle demonstrations have been made for cold atom interferometer (CAI) sensors. Using C...
The success of GRACE-FO and its predecessors has demonstrated the benefits of satellite gravimetry f...
For more than two decades, satellite gravimetry missions have provided unique data about mass redist...
10Both GRACE and GOCE have proven to be very successful missions, providing a wealth of data which ...
International audienceThe prospects of future satellite gravimetry missions to sustain a continuous ...
Both GRACE and GOCE have proven to be very successful missions, providing a wealth of data which are...
Cold Atom Interferometry (CAI) is a promising new technology for gravity missions, enabling measurem...