The spacecraft P1 of the new ARTEMIS (Acceleration, Reconnection, Turbulence, and Electrodynamics of the Moon’s Interaction with the Sun) mission passed the lunar wake for the first time on February 13, 2010. We present magnetic field and plasma data of this event and results of 3D hybrid simulations. As the solar wind magnetic field was highly dynamic during the passage, a simulation with stationary solar wind input cannot distinguish whether distortions were caused by these solar wind variations or by the lunar wake; therefore, a dynamic real-time simulation of the flyby has been performed. The input values of this simulation are taken from NASA OMNI data and adapted to the P1 data, resulting in a good agreement between simulation ...
As a consequence of its lack of a thick atmosphere and an ionosphere, the interaction of the solar ...
The solar wind plasma from the Sun interacts with the Moon, generating a wake structure behind it, s...
Recent theory and numerical simulation predicts that the wake of the solar wind flow past the Moon s...
Data from the two-spacecraft Acceleration, Reconnection, Turbulence and Electrodynamics of the Moon&...
Magnetohydrodynamics (MHD) predicts that lunar wake expands outward at magnetosonic velocities in al...
[1] We study the structure and properties of the lunar wake with these solar wind parameters: the an...
In the solar wind, a low-density wake region forms downstream of the nightside lunar surface. In thi...
Exoplanets are a place of numerous new effects in plasma physics and raise interest in extra-solar p...
Data from the two‐spacecraft Acceleration, Reconnection, Turbulence and Electrodynamics of the Moon'...
We study the interaction between the Moon and the solar wind using a three-dimensional hybrid plasma...
This thesis discusses the solar wind interaction with the Moon and the formation of the lunar plasma...
We study the interaction between the Moon and the solar wind using a three-dimensional hybrid plasma...
The solar wind plasma from the Sun interacts with the Moon, generating a wake structure behind it, s...
The main purpose of this research is to understand various aspects of the solar wind plasma interact...
The solar wind wake behind the moon is studied with 1D electrostatic particle-in-cell (PIC) simulati...
As a consequence of its lack of a thick atmosphere and an ionosphere, the interaction of the solar ...
The solar wind plasma from the Sun interacts with the Moon, generating a wake structure behind it, s...
Recent theory and numerical simulation predicts that the wake of the solar wind flow past the Moon s...
Data from the two-spacecraft Acceleration, Reconnection, Turbulence and Electrodynamics of the Moon&...
Magnetohydrodynamics (MHD) predicts that lunar wake expands outward at magnetosonic velocities in al...
[1] We study the structure and properties of the lunar wake with these solar wind parameters: the an...
In the solar wind, a low-density wake region forms downstream of the nightside lunar surface. In thi...
Exoplanets are a place of numerous new effects in plasma physics and raise interest in extra-solar p...
Data from the two‐spacecraft Acceleration, Reconnection, Turbulence and Electrodynamics of the Moon'...
We study the interaction between the Moon and the solar wind using a three-dimensional hybrid plasma...
This thesis discusses the solar wind interaction with the Moon and the formation of the lunar plasma...
We study the interaction between the Moon and the solar wind using a three-dimensional hybrid plasma...
The solar wind plasma from the Sun interacts with the Moon, generating a wake structure behind it, s...
The main purpose of this research is to understand various aspects of the solar wind plasma interact...
The solar wind wake behind the moon is studied with 1D electrostatic particle-in-cell (PIC) simulati...
As a consequence of its lack of a thick atmosphere and an ionosphere, the interaction of the solar ...
The solar wind plasma from the Sun interacts with the Moon, generating a wake structure behind it, s...
Recent theory and numerical simulation predicts that the wake of the solar wind flow past the Moon s...