AbstractThe dayside of the Venus ionosphere at the top of the planet׳s thick atmosphere is sustained by photoionization. The consequent photoelectrons may be identified by specific peaks in the energy spectrum at 20–30eV which are mainly due to atomic oxygen photoionization. The ASPERA-4 electron spectrometer has an energy resolution designed to identify the photoelectron production features. Photoelectrons are seen not only in their production region, the sunlit ionosphere, but also at more distant locations on the nightside of the Venus environment. Here, we present a summary of the work to date on observations of photoelectrons at Venus, and their comparison with similar processes at Titan and Mars. We expand further by presenting new ex...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
The Solar Orbiter flyby of Venus on 27 December 2020 allowed for an opportunity to measure the supra...
International audienceThe Solar Orbiter flyby of Venus on 27 December 2020 allowed for an opportunit...
The dayside of the Venus ionosphere at the top of the planet's thick atmosphere is sustained by phot...
AbstractThe dayside of the Venus ionosphere at the top of the planet׳s thick atmosphere is sustained...
AbstractThe presence of photoelectrons in ionospheres, including that of unmagnetised Venus, can be ...
The sunlit portion of planetary ionospheres is sustained by photoionization. This was first confirme...
The presence of photoelectrons in ionospheres, including that of unmagnetised Venus, can be inferred...
We report the detection of electrons due to photo-ionization of atomic oxygen and carbon dioxide in ...
The major mechanisms for maintenance of the nightside ionosphere of Venus have been the subject of m...
The ionospheres of Venus and Mars are important components of the planet-space boundary that play a ...
In this study, a multistream kinetic model is used to derive the suprathermal electron intensity in ...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
The Solar Orbiter flyby of Venus on 27 December 2020 allowed for an opportunity to measure the supra...
International audienceThe Solar Orbiter flyby of Venus on 27 December 2020 allowed for an opportunit...
The dayside of the Venus ionosphere at the top of the planet's thick atmosphere is sustained by phot...
AbstractThe dayside of the Venus ionosphere at the top of the planet׳s thick atmosphere is sustained...
AbstractThe presence of photoelectrons in ionospheres, including that of unmagnetised Venus, can be ...
The sunlit portion of planetary ionospheres is sustained by photoionization. This was first confirme...
The presence of photoelectrons in ionospheres, including that of unmagnetised Venus, can be inferred...
We report the detection of electrons due to photo-ionization of atomic oxygen and carbon dioxide in ...
The major mechanisms for maintenance of the nightside ionosphere of Venus have been the subject of m...
The ionospheres of Venus and Mars are important components of the planet-space boundary that play a ...
In this study, a multistream kinetic model is used to derive the suprathermal electron intensity in ...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
The Solar Orbiter flyby of Venus on 27 December 2020 allowed for an opportunity to measure the supra...
International audienceThe Solar Orbiter flyby of Venus on 27 December 2020 allowed for an opportunit...