International audienceWe present a general model of the solar wind interaction with a dipolar lunar crustal magnetic anomaly (LMA) using three-dimensional full-kinetic and electromagnetic simulations. We confirm that LMAs may indeed be strong enough to stand off the solar wind from directly impacting the lunar surface, forming a so-called ‘mini-magnetosphere’, as suggested by spacecraft observations and theory. We show that the LMA configuration is driven by electron motion because its scale size is small with respect to the gyro-radius of the solar wind ions. We identify a population of back-streaming ions, the deflection of magnetized electrons via the E × B drift motion, and the subsequent formation of a halo region of elevated density a...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
The main purpose of this research is to understand various aspects of the solar wind plasma interact...
International audienceWe present a general model of the solar wind interaction with a dipolar lunar ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present the first three-dimensional fully kinetic and electromagnetic simul...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
International audienceA detailed understanding of the solar wind interaction with lunar magnetic ano...
Unlike the Earth and Mercury, our Moon has no global magnetic field and is therefore not shielded fr...
International audienceA detailed understanding of the solar wind interac- tion with lunar magnetic a...
We discuss the influence of lunar magnetic anomalies on the solar wind and on the lunar surface, bas...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
Abstract Kinetic simulations are used to examine the solar wind’s interaction with a 3 km wide regio...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
The main purpose of this research is to understand various aspects of the solar wind plasma interact...
International audienceWe present a general model of the solar wind interaction with a dipolar lunar ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present the first three-dimensional fully kinetic and electromagnetic simul...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
International audienceA detailed understanding of the solar wind interaction with lunar magnetic ano...
Unlike the Earth and Mercury, our Moon has no global magnetic field and is therefore not shielded fr...
International audienceA detailed understanding of the solar wind interac- tion with lunar magnetic a...
We discuss the influence of lunar magnetic anomalies on the solar wind and on the lunar surface, bas...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
Abstract Kinetic simulations are used to examine the solar wind’s interaction with a 3 km wide regio...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
The main purpose of this research is to understand various aspects of the solar wind plasma interact...