As an Earth-like planet Venus probably had a primordial dipole field for several million years after formation of the planet. Since this dipole field eventually vanished the ionosphere of Venus has been exposed to the solar wind. The solar wind is shocked near Venus, and then scavenges the ionospheric particles through the magnetosheath and the magnetotail. The escape rate of oxygen ions (O+) estimated from spacecraft observations over the past several decades has manifested its importance for the evolution of planetary habitability, considering the accumulated effect over the history of Venus. However, all the previous observations were made in the shocked solar wind and/or inside the wake, though some simulations showed that unshocked sol...
International audienceA fundamental question for the atmospheric evolution of Venus is how much wate...
We study the solar wind‐driven, nonthermal escape of O+ ions from Venus in a global hybrid simulatio...
Model calculations, as well as optical observations, have shown that hot oxygen is the dominant neut...
As an Earth-like planet Venus probably had a primordial dipole field for several million years after...
International audienceThe present atmosphere of Venus contains almost no water, but recent measureme...
The present atmosphere of Venus contains almost no water, but recent measurements indicate that in i...
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...
International audienceWe investigate dependences of O+ escape rates from Venus both on the solar win...
We study the solar wind induced oxygen ion escape from Venus' upper atmosphere and the Venus Expres...
Venus, unlike Earth, is an extremely dry planet although both began with similar masses, distances f...
International audienceUnderstanding what processes govern atmospheric escape and the loss of planeta...
Understanding what processes govern atmospheric escape and the loss of planetary water is of paramou...
A fundamental question for the atmospheric evolution of Venus is how much water-related material esc...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
International audienceA fundamental question for the atmospheric evolution of Venus is how much wate...
We study the solar wind‐driven, nonthermal escape of O+ ions from Venus in a global hybrid simulatio...
Model calculations, as well as optical observations, have shown that hot oxygen is the dominant neut...
As an Earth-like planet Venus probably had a primordial dipole field for several million years after...
International audienceThe present atmosphere of Venus contains almost no water, but recent measureme...
The present atmosphere of Venus contains almost no water, but recent measurements indicate that in i...
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...
International audienceWe investigate dependences of O+ escape rates from Venus both on the solar win...
We study the solar wind induced oxygen ion escape from Venus' upper atmosphere and the Venus Expres...
Venus, unlike Earth, is an extremely dry planet although both began with similar masses, distances f...
International audienceUnderstanding what processes govern atmospheric escape and the loss of planeta...
Understanding what processes govern atmospheric escape and the loss of planetary water is of paramou...
A fundamental question for the atmospheric evolution of Venus is how much water-related material esc...
Atmospheric escape from the upper atmosphere of Venus is mainly influenced by the loss of hydrogen a...
International audienceA fundamental question for the atmospheric evolution of Venus is how much wate...
We study the solar wind‐driven, nonthermal escape of O+ ions from Venus in a global hybrid simulatio...
Model calculations, as well as optical observations, have shown that hot oxygen is the dominant neut...