All lunar swirls are known to be co-located with crustal magnetic anomalies (LMAs). Not all LMAs can be associated with albedo markings, making swirls, and their possible connection with the former, an intriguing puzzle yet to be solved. By coupling fully kinetic simulations with a Surface Vector Mapping model, we show that solar wind standoff, an ion–electron kinetic interaction mechanism that locally prevents weathering by solar wind ions, reproduces the shape of the Reiner Gamma albedo pattern. Our method reveals why not every magnetic anomaly forms a distinct albedo marking. A qualitative match between optical remote observations and in situ particle measurements of the back-scattered ions is simultaneously achieved, demonstrating the i...
The Moon has small scale regions of strong magnetic fields scattered over its surface, known as crus...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
All lunar swirls are known to be co-located with crustal magnetic anomalies (LMAs). Not all LMAs can...
International audienceThe Reiner Gamma swirl is a prime location to investigate the lunar albedo pat...
International audienceWe present a general model of the solar wind interaction with a dipolar lunar ...
Lunar swirls are complex patterns on the Moon with distinct brightness signatures and magnetic chara...
We discuss the influence of lunar magnetic anomalies on the solar wind and on the lunar surface, bas...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
Analysis of spectra from the Clementine ultraviolet-visible and near-infrared cameras of small, imma...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
International audienceWe present the first three-dimensional fully kinetic and electromagnetic simul...
The Moon has neither a strong magnetic field nor a dense atmosphere to stand-off the solar wind. How...
The Moon has small scale regions of strong magnetic fields scattered over its surface, known as crus...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...
All lunar swirls are known to be co-located with crustal magnetic anomalies (LMAs). Not all LMAs can...
International audienceThe Reiner Gamma swirl is a prime location to investigate the lunar albedo pat...
International audienceWe present a general model of the solar wind interaction with a dipolar lunar ...
Lunar swirls are complex patterns on the Moon with distinct brightness signatures and magnetic chara...
We discuss the influence of lunar magnetic anomalies on the solar wind and on the lunar surface, bas...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
Analysis of spectra from the Clementine ultraviolet-visible and near-infrared cameras of small, imma...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
International audienceWe present the first three-dimensional fully kinetic and electromagnetic simul...
The Moon has neither a strong magnetic field nor a dense atmosphere to stand-off the solar wind. How...
The Moon has small scale regions of strong magnetic fields scattered over its surface, known as crus...
Using a two-dimensional hybrid simulation, we study the physics of the interaction of the solar wind...
As the solar wind is incident upon the lunar surface, it will occasionally encounter lunar crustal r...