Atomic Energy Commission, Grenoble
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Affiliated Works
sorted by decreasing year, and then by display-name
- Nano-scale solution-reprecipitation responsible for altered near-surface zones during feldspar dissolution
- Earth's Volatiles History and Cycles: the Case of Iodine
- Swarm's Absolute Scalar Magnetometer metrological performances
- The Halogen's History of the Early Earth
- A 2015 Igrf Candidate Model Based on Swarm's Experimental ASM Vector Mode Data
- Comparing Swarm's Nominal Level1b Magnetic Data and ASM Vector Field Experimental Data: a Convenient Tool for Understanding Data Quality Issues.
- In-flight calibration of the experimental Absolute Scalar Magnetometer vector mode on board the Swarm satellites
- Swarm's Absolute Magnetometer (ASM) Experimental Vector Mode, a Unique Capability With Considerable Potential
- Swarm's Absolute Scalar Magnetometers Burst Mode Results
- Analysis of Plasma Irregularities and Electromagnetic Signals Based on Swarm Absolute Scalar Magnetometer Burst Mode Sessions
- The Absolute Vector Magnetometers on Board Swarm, Lessons Learned From Two Years in Space.
- The Delta Low-Inclination Satellite Concept, an Opportunity to Enhance the Science Return of the Swarm Mission
- Multi-Scale and Multi-Dimensional Mineralogical Mapping using Machine Learning
- Towards Low-Cost Permanent Space-Borne Observation of the Geomagnetic Field and Ionospheric Environment
- Whistler-like Signals Detected Simultaneously by Swarm Satellites
- Nanosatellite High-Precision Magnetic Missions Enabled by Advances in a Stand-Alone Scalar/Vector Absolute Magnetometer
- Revealing the sub-nanometere three-dimensional microscture of a metallic meteorite
- Experimental burst mode (250 Hz) magnetic scalar data reveal the possibility of using ELF whistlers to systematically probe the ionosphere below the Swarm satellites
- The NanoMagSat Nanosatellite High-Precision Magnetic Project
- Towards a LEO Nanosatellite Constellation for Permanent Monitoring of the Earth's Magnetic Field and Ionosphere: The NanoMagSat Nanosatellite Constellation High-Precision Magnetic Project.
- NanoMagSat, a 16U Nanosatellite Constellation High-Precision Magnetic Project to Monitor the Earth's Magnetic Field and Ionospheric Environment
- Sismo - volcano classification in real time based on Empirical Mode Decomposition (EMD) and Machine Learning