Abstract: Ion escape from the atmosphere to space is one of the most likely reasons to account for the evolution of the Martian climate. Based on three-dimensional multifluid magnetohydrodynamic simulations, we investigated the impact of the magnetic inclination angle on O+ escape at low altitudes of 275–1000 km under the typical solar wind conditions. Numerical results showed that an outward ion velocity in the direction opposite to the electromagnetic (EM) force results in weak outward flux and leads to ions becoming trapped by the horizontal magnetic field lines at the local horizontal magnetic equator. Much of the EM force can be attributed to the Hall electric force. In the region of high absolute magnetic inclination angle, the outwar...
Amongst various escape channels, ion outflow is a major contributor to atmospheric loss at Mars over...
Without the protection of a global magnetic field, erosion of the Martian ionosphere by the solar wi...
Present-day Mars is a cold and dry planet with a thin CO2-dominated atmosphere comprising only a few...
The effect of the Martian crustal magnetic field on ion escape is the focus of considerable interest...
International audienceWe present a kinetic study to quantify the response of Mars’ atmosphere to cha...
The effect of the Martian crustal magnetic field on ion escape is the focus of considerable interest...
International audienceWe present the effects of the local magnetic field configurations on ions prec...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...
Intrinsic magnetic fields have long been thought to shield planets from atmospheric erosion via stel...
[1] This study quantifies several factors controlling the probability of a pickup oxygen ion to esca...
Since Mars does not possess a significant global intrinsic magnetic field, the solar wind interacts...
International audienceMartian crustal magnetic fields influence the solar wind interaction with Mars...
Based on the Mars Atmosphere and Volatile EvolutioN (MAVEN) observations, we have analyzed the role ...
A model for the polar ion exosphere of Mars is developed to calculate the escape flux and density of...
Based on the Mars Atmosphere and Volatile EvolutioN (MAVEN) observations we have analyzed the role o...
Amongst various escape channels, ion outflow is a major contributor to atmospheric loss at Mars over...
Without the protection of a global magnetic field, erosion of the Martian ionosphere by the solar wi...
Present-day Mars is a cold and dry planet with a thin CO2-dominated atmosphere comprising only a few...
The effect of the Martian crustal magnetic field on ion escape is the focus of considerable interest...
International audienceWe present a kinetic study to quantify the response of Mars’ atmosphere to cha...
The effect of the Martian crustal magnetic field on ion escape is the focus of considerable interest...
International audienceWe present the effects of the local magnetic field configurations on ions prec...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...
Intrinsic magnetic fields have long been thought to shield planets from atmospheric erosion via stel...
[1] This study quantifies several factors controlling the probability of a pickup oxygen ion to esca...
Since Mars does not possess a significant global intrinsic magnetic field, the solar wind interacts...
International audienceMartian crustal magnetic fields influence the solar wind interaction with Mars...
Based on the Mars Atmosphere and Volatile EvolutioN (MAVEN) observations, we have analyzed the role ...
A model for the polar ion exosphere of Mars is developed to calculate the escape flux and density of...
Based on the Mars Atmosphere and Volatile EvolutioN (MAVEN) observations we have analyzed the role o...
Amongst various escape channels, ion outflow is a major contributor to atmospheric loss at Mars over...
Without the protection of a global magnetic field, erosion of the Martian ionosphere by the solar wi...
Present-day Mars is a cold and dry planet with a thin CO2-dominated atmosphere comprising only a few...