The heating of the solar wind and its interaction with the unique planetary magnetosphere of Mercury is the primary focus of this work. The first aspect of this study focused on the heavy ion population of the solar wind (A > 4 amu), and how well the signature of the heating process responsible for creating the solar wind is preserved in this heavy ion population. We found that this signature in the heavy ion population is primarily erased (thermalized) via Coulomb collisional interactions with solar wind protons. The heavy ions observed in collisionally young solar wind reveal a clear, stable dependence on mass, along with non-thermal heating that is not in agreement with current predictions based on turbulent transport and kinetic dissi...
Mercury has proven to be a unique natural laboratory for space plasma processes. Mercury’s magnetosp...
International audienceIn 1974 Mariner-10 discovered the hermean magnetosphere characterized by its s...
The Van Allen Probes Mission has provided an opportunity to examine the ion high-energy (1-10 eV) ta...
The heating of the solar wind and its interaction with the unique planetary magnetosphere of Mercury...
Heavy ions in the solar wind record the history of physical events occurring to a given parcel of pl...
With data from the Fast Imaging Plasma Spectrometer sensor on the MErcury Surface, Space ENvironment...
With data from the Fast Imaging Plasma Spectrometer sensor on the MErcury Surface, Space ENvironment...
This thesis presents new tracings of ions in Mercury's magnetosphere that model the variability of t...
Mercury is the closest planet to the Sun, possesses a weak intrinsic magnetic field and has only a v...
Mercury’s global magnetic field forms a terrestrial-like magnetosphere with its interaction with the...
We report on the first observations of plasma ions at Mercury, from the Fast Imaging Plasma Spectrom...
We modeled the exospheric densities for sputtering and thermal desorption in detail for the time per...
International audienceIt has long been suspected since Mariner-10 observations that solar wind ions ...
The geospace system, consisting of the intrinsically coupled magnetosphere, ionosphere and thermosph...
We modeled the exospheric densities for sputtering and thermal desorption in detail for the time per...
Mercury has proven to be a unique natural laboratory for space plasma processes. Mercury’s magnetosp...
International audienceIn 1974 Mariner-10 discovered the hermean magnetosphere characterized by its s...
The Van Allen Probes Mission has provided an opportunity to examine the ion high-energy (1-10 eV) ta...
The heating of the solar wind and its interaction with the unique planetary magnetosphere of Mercury...
Heavy ions in the solar wind record the history of physical events occurring to a given parcel of pl...
With data from the Fast Imaging Plasma Spectrometer sensor on the MErcury Surface, Space ENvironment...
With data from the Fast Imaging Plasma Spectrometer sensor on the MErcury Surface, Space ENvironment...
This thesis presents new tracings of ions in Mercury's magnetosphere that model the variability of t...
Mercury is the closest planet to the Sun, possesses a weak intrinsic magnetic field and has only a v...
Mercury’s global magnetic field forms a terrestrial-like magnetosphere with its interaction with the...
We report on the first observations of plasma ions at Mercury, from the Fast Imaging Plasma Spectrom...
We modeled the exospheric densities for sputtering and thermal desorption in detail for the time per...
International audienceIt has long been suspected since Mariner-10 observations that solar wind ions ...
The geospace system, consisting of the intrinsically coupled magnetosphere, ionosphere and thermosph...
We modeled the exospheric densities for sputtering and thermal desorption in detail for the time per...
Mercury has proven to be a unique natural laboratory for space plasma processes. Mercury’s magnetosp...
International audienceIn 1974 Mariner-10 discovered the hermean magnetosphere characterized by its s...
The Van Allen Probes Mission has provided an opportunity to examine the ion high-energy (1-10 eV) ta...