We study a space-based gravity gradiometer based on cold atom interferometry and its potential for the Earth’s gravitational field mapping. The instrument architecture has been proposed in Carraz et al (2014 Microgravity Sci. Technol. 26 139) and enables high-sensitivity measurements of gravity gradients by using atom interferometers in a differential accelerometer configuration. We present the design of the instrument including its subsystems and analyze the mission scenario, for which we derive the expected instrument performances, the requirements on the sensor and its key subsystems, and the expected impact on the recovery of the Earth gravity field
In recent years, an innovative mission concept has been proposed for gravity measurements with the a...
In recent years, an innovative mission concept has been proposed for gravity measurements with the a...
The electrostatic gravity gradiometer has been successfully applied as a core sensor in satellite gr...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
Abstract—Funded by the Advanced Technology Component Program, we have completed the development of a...
Abstract—Funded by the Advanced Technology Component Program, we have completed the development of a...
In recent years, an innovative mission concept has been proposed for gravity measurements with the a...
In recent years, an innovative mission concept has been proposed for gravity measurements with the a...
The electrostatic gravity gradiometer has been successfully applied as a core sensor in satellite gr...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
International audienceWe study a space-based gravity gradiometer based on cold atom interferometry a...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
We study a space-based gravity gradiometer based on cold atom interferometry and its potential for t...
Abstract—Funded by the Advanced Technology Component Program, we have completed the development of a...
Abstract—Funded by the Advanced Technology Component Program, we have completed the development of a...
In recent years, an innovative mission concept has been proposed for gravity measurements with the a...
In recent years, an innovative mission concept has been proposed for gravity measurements with the a...
The electrostatic gravity gradiometer has been successfully applied as a core sensor in satellite gr...