International audienceA detailed understanding of the solar wind interaction with lunar magnetic anomalies (LMAs) is essential to identify its implications for lunar exploration and to enhance our physical understanding of the particle dynamics in a magnetised plasma. We present the first three-dimensional full-kinetic electromagnetic simulation case study of the solar wind interaction with a vertical dipole, resembling a medium-size LMA. In contrast to a horizontal dipole, we show that a vertical dipole twists its field lines and cannot form a mini-magnetosphere. Instead, it creates a ring-shaped weathering pattern and reflects up to 21% (4 times more as compared to the horizontal case) of the incoming solar wind ions electrostatically thr...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
International audienceA detailed understanding of the solar wind interaction with lunar magnetic ano...
International audienceA detailed understanding of the solar wind interac- tion with lunar magnetic a...
International audienceWe present a general model of the solar wind interaction with a dipolar lunar ...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
Unlike the Earth and Mercury, our Moon has no global magnetic field and is therefore not shielded fr...
Abstract Kinetic simulations are used to examine the solar wind’s interaction with a 3 km wide regio...
We study the interaction between a magnetic dipole mimicking the Gerasimovich magnetic anomaly on th...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
International audienceA detailed understanding of the solar wind interaction with lunar magnetic ano...
International audienceA detailed understanding of the solar wind interac- tion with lunar magnetic a...
International audienceWe present a general model of the solar wind interaction with a dipolar lunar ...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
Unlike the Earth and Mercury, our Moon has no global magnetic field and is therefore not shielded fr...
Abstract Kinetic simulations are used to examine the solar wind’s interaction with a 3 km wide regio...
We study the interaction between a magnetic dipole mimicking the Gerasimovich magnetic anomaly on th...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...