International audienceIn this paper, we propose a 3D kinetic model (particle-in-cell, PIC) for the description of the large scale Earth’s bow shock. The proposed version is stable and does not require huge or extensive computer resources. Because PIC simulations work with scaled plasma and field parameters, we also propose to validate our code by comparing its results with the available MHD simulations under same scaled solar wind (SW) and (IMF) conditions. We report new results from the two models. In both codes the Earth’s bow shock position is found to be ≈14.8 R E along the Sun–Earth line, and ≈29 R E on the dusk side. Those findings are consistent with past in situ observations. Both simulations reproduce the theoretical jump condition...
International audienceIn this paper, we investigate the interaction of a magnetic cloud (MC) with a ...
Earth's bow shock changes its three-dimensional (3-D) location in response to changes in the solar w...
International audienceWe carried out global Particle-in-Cell simulations of the interaction between ...
Understanding how magnetic energy is transported and converted into kinetic and thermal energy durin...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
© J. Pomoell et al., Published by EDP Sciences 2015. We have developed a new version of a model that...
International audienceThe Earths magnetopause (MP) is a sensitive region where the pressure of the E...
International audienceIn order to model the magnetic field amplification and particle acceleration t...
The location and geometry of Earth's bow shock vary considerably with the solar wind conditions. Mor...
International audienceLarge-scale structures in the dayside terrestrial magnetosheath are studied in...
International audienceMagnetic clouds (MCs) are a subset of coronal mass ejections which are known f...
New models for the size and shape of the Earth’s magnetopause and bow shock are derived, based on a ...
International audienceIn this paper, we investigate the interaction of a magnetic cloud (MC) with a ...
Earth's bow shock changes its three-dimensional (3-D) location in response to changes in the solar w...
International audienceWe carried out global Particle-in-Cell simulations of the interaction between ...
Understanding how magnetic energy is transported and converted into kinetic and thermal energy durin...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
© J. Pomoell et al., Published by EDP Sciences 2015. We have developed a new version of a model that...
International audienceThe Earths magnetopause (MP) is a sensitive region where the pressure of the E...
International audienceIn order to model the magnetic field amplification and particle acceleration t...
The location and geometry of Earth's bow shock vary considerably with the solar wind conditions. Mor...
International audienceLarge-scale structures in the dayside terrestrial magnetosheath are studied in...
International audienceMagnetic clouds (MCs) are a subset of coronal mass ejections which are known f...
New models for the size and shape of the Earth’s magnetopause and bow shock are derived, based on a ...
International audienceIn this paper, we investigate the interaction of a magnetic cloud (MC) with a ...
Earth's bow shock changes its three-dimensional (3-D) location in response to changes in the solar w...
International audienceWe carried out global Particle-in-Cell simulations of the interaction between ...