8 citations · 17 across the 6 of their papers we have counts for
6 papers
Impact of rotation on a cold atom interferometer and compensation strategy
Noémie Marquet, Yannick Bidel, Malo Cadoret +8
Rotations play a detrimental role in achieving ultra-high-performance inertial measurements with an atom interferometer, leading potentially to a total loss of interference contras…
Towards a realistic noise modelling of quantum sensors for future satellite gravity missions
Joao Encarnacao, Christian Siemes, Ilias Daras +4
Mapping the Earth's gravity field from space offers valuable insights into climate change, hydro- and biosphere evolution, and seismic activity. Current satellite gravimetry missio…
Hybrid electrostatic-atomic accelerometer for future space gravity missions
Nassim Zahzam, Bruno Christophe, Vincent Lebat +11
Long term observation of temporal Earth's gravity field with enhanced temporal and spatial resolution is a major objective for future satellite gravity missions. Improving the perf…
Cold Atoms in Space: Community Workshop Summary and Proposed Road-Map
Ivan Alonso, Cristiano Alpigiani, Brett Altschul +246
We summarize the discussions at a virtual Community Workshop on Cold Atoms in Space concerning the status of cold atom technologies, the prospective scientific and societal opportu…
Measuring the Earth's gravity field with cold atom interferometers
Olivier Carraz, Christian Siemes, Luca Massotti +2
The scope of the paper is to propose different concepts for future space gravity missions using Cold Atom Interferometers (CAI) for measuring the diagonal elements of the gravity g…
I.C.E.: An Ultra-Cold Atom Source for Long-Baseline Interferometric Inertial Sensors in Reduced Gravity
Gaël Varoquaux, Nassim Zahzam, Walid Chaibi +11
The accuracy and precision of current atom-interferometric inertialsensors rival state-of-the-art conventional devices using artifact-based test masses . Atomic sensors are well su…