AbstractVenus is gradually losing some of its atmosphere in the form of ions through its induced magnetotail. Some of these ions have been reported previously to flow back to the planet. Proposed drivers are magnetic reconnection and deflection of pickup ions in the magnetic field. We analyze protons and oxygen ions with eV to keV energies acquired by the ASPERA-4/IMA instrument throughout the entire Venus Express mission. We find that venusward flowing ions are important in the sense that their density and deposition rate into the atmosphere is of the same order of magnitude as the density and escape rate of downtail flowing ions. Our analysis shows that during strong EUV irradiance, which occurs during solar maximum, the flux of venusward...
Magnetometer measurements on the Pioneer Venus Orbiter (PVO) have shown that Venus is a non-magnetic...
International audienceA fundamental question for the atmospheric evolution of Venus is how much wate...
The solar wind interacts with the non-magnetic planet Venus by processes within the mantle region, l...
International audienceWe investigate dependences of O+ escape rates from Venus both on the solar win...
The present‐day Venusian atmosphere is dry, yet, in its earlier history a significant amount of wate...
The purpose of this dissertation is to expand our understanding of oxygen ion escape to space from V...
We study the solar wind induced oxygen ion escape from Venus' upper atmosphere and the Venus Expres...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
Both particle and electromagnetic energy flow into the Earth’s high latitude ionosphere. This energy...
As an Earth-like planet Venus probably had a primordial dipole field for several million years after...
Precipitation of solar wind ions in the Venusian atmosphere during solar minimum is studied using AS...
We have an unique opportunity to compare the magnetospheres of two non-magnetic planets as Mars and ...
Venus, unlike Earth, is an extremely dry planet although both began with similar masses, distances f...
Strong ultraviolet radiation from the Sun ionizes the upper atmosphere of Venus, creating a dense i...
A fundamental question for the atmospheric evolution of Venus is how much water-related material esc...
Magnetometer measurements on the Pioneer Venus Orbiter (PVO) have shown that Venus is a non-magnetic...
International audienceA fundamental question for the atmospheric evolution of Venus is how much wate...
The solar wind interacts with the non-magnetic planet Venus by processes within the mantle region, l...
International audienceWe investigate dependences of O+ escape rates from Venus both on the solar win...
The present‐day Venusian atmosphere is dry, yet, in its earlier history a significant amount of wate...
The purpose of this dissertation is to expand our understanding of oxygen ion escape to space from V...
We study the solar wind induced oxygen ion escape from Venus' upper atmosphere and the Venus Expres...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
Both particle and electromagnetic energy flow into the Earth’s high latitude ionosphere. This energy...
As an Earth-like planet Venus probably had a primordial dipole field for several million years after...
Precipitation of solar wind ions in the Venusian atmosphere during solar minimum is studied using AS...
We have an unique opportunity to compare the magnetospheres of two non-magnetic planets as Mars and ...
Venus, unlike Earth, is an extremely dry planet although both began with similar masses, distances f...
Strong ultraviolet radiation from the Sun ionizes the upper atmosphere of Venus, creating a dense i...
A fundamental question for the atmospheric evolution of Venus is how much water-related material esc...
Magnetometer measurements on the Pioneer Venus Orbiter (PVO) have shown that Venus is a non-magnetic...
International audienceA fundamental question for the atmospheric evolution of Venus is how much wate...
The solar wind interacts with the non-magnetic planet Venus by processes within the mantle region, l...