Analysis of the data obtained by SELENE (Kaguya) revealed a partial loss in the electron velocity distribution function due to the "gyro-loss effect", namely gyrating electrons being absorbed by the lunar surface. The Moon enters the Earth's magnetosphere for a few days around full moon, where plasma conditions are significantly different from those in the solar wind. When the magnetic field is locally parallel to the lunar surface, relatively high-energy electrons in the terrestrial plasma sheet with Larmor radii greater than SELENE's orbital height strike the lunar surface and are absorbed before they can be detected. This phenomenon can be observed as an empty region in the electron distribution function, which is initially isotropic in ...
The surface of the Moon is electrically charged by exposure to solar radiation on its dayside, as we...
[1] On the lunar dayside, photoelectrons are quasi-constantly emitted from the Moon’s surface and th...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
Electron distributions measured by Lunar Prospector above the dayside lunar surface in the solar win...
Interaction between terrestrial plasma sheet1 electrons and the lunar surface: SELENE (Kaguya)2 obse...
Radio occultation observations of the electron density near the lunar surface were conducted during ...
The two ARTEMIS probes observe significant precursor activity upstream from the Moon, when magnetica...
Plasma physical processes near the lunar surface depend on the properties of the ambient plasma. How...
Electron distributions measured by Lunar Prospector above the dayside lunar surface in the solar win...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
The sunlit lunar surface potential has been determined experimentally using 2 months of data provide...
During the SELENE (Kaguya) mission the dual-spacecraft radio occultation technique was used to inves...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
Properties of the electron population in the magnetosheath at lunar distance have been analyzed usin...
The surface of the Moon is electrically charged by exposure to solar radiation on its dayside, as we...
[1] On the lunar dayside, photoelectrons are quasi-constantly emitted from the Moon’s surface and th...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
Electron distributions measured by Lunar Prospector above the dayside lunar surface in the solar win...
Interaction between terrestrial plasma sheet1 electrons and the lunar surface: SELENE (Kaguya)2 obse...
Radio occultation observations of the electron density near the lunar surface were conducted during ...
The two ARTEMIS probes observe significant precursor activity upstream from the Moon, when magnetica...
Plasma physical processes near the lunar surface depend on the properties of the ambient plasma. How...
Electron distributions measured by Lunar Prospector above the dayside lunar surface in the solar win...
AbstractWe present the results of the first local hybrid simulations (particle ions and fluid electr...
The sunlit lunar surface potential has been determined experimentally using 2 months of data provide...
During the SELENE (Kaguya) mission the dual-spacecraft radio occultation technique was used to inves...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...
We present the first three-dimensional fully kinetic and electromagnetic simulations of the solar wi...
Properties of the electron population in the magnetosheath at lunar distance have been analyzed usin...
The surface of the Moon is electrically charged by exposure to solar radiation on its dayside, as we...
[1] On the lunar dayside, photoelectrons are quasi-constantly emitted from the Moon’s surface and th...
International audienceWe present three-dimensional fully kinetic and electromagnetic simulations of ...