International audienceThe measurements carried out by the ASPERA-3 and MARSIS experiments on board the Mars Express (MEX) spacecraft show that the upper Martian ionosphere (h ≥ 400 km) is strongly azimuthally asymmetrical. There are several factors, e.g., the crustal magnetization on Mars and the orientation of the interplanetary magnetic field (IMF) which can give rise to formation of ionospheric swells and valleys. It is shown that expansion of the ionospheric plasma along the magnetic field lines of crustal origin can produce bulges in the plasma density. The absense of a magnetometer on MEX makes the retrieval of an asymmetry caused by the IMF more difficult. However hybrid simulations give a hint that the ionosphere in the hemisphere (...
Mars is a small body in the solar wind with no intrinsic magnetic field but strong crustal magnetic ...
International audienceDirect interaction between the solar wind (SW) and the Martian upper atmospher...
International audienceWe report the indirect detection of an induced magnetic field in the ionospher...
International audienceThe measurements carried out by the ASPERA-3 and MARSIS experiments on board t...
In two previous papers (Dubinin et al., 2016, 2017a) we studied the influence of the crustal magneti...
International audienceAn asymmetrical pileup of the interplanetary magnetic field (IMF) leads to an ...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...
The observations made by the Mars Atmosphere and Volatile EvolutioN spacecraft in the topside (≥200 ...
An asymmetrical pileup of the interplanetary magnetic field leads to an additional draping of the fi...
International audienceAnalysis of MAVEN/STATIC observations in the Martian upper atmosphere, bounded...
The Martian magnetosphere contains elements of induced and intrinsic origin. To display them one mus...
International audienceThe Martian magnetosphere contains elements of induced and intrinsic origin. T...
Mars does not currently have a global dipole magnetic field, and consequently, the atmosphere of the...
International audienceMAVEN observations show that the global spatial distribution of ions precipita...
Mars is a small body in the solar wind with no intrinsic magnetic field but strong crustal magnetic ...
International audienceDirect interaction between the solar wind (SW) and the Martian upper atmospher...
International audienceWe report the indirect detection of an induced magnetic field in the ionospher...
International audienceThe measurements carried out by the ASPERA-3 and MARSIS experiments on board t...
In two previous papers (Dubinin et al., 2016, 2017a) we studied the influence of the crustal magneti...
International audienceAn asymmetrical pileup of the interplanetary magnetic field (IMF) leads to an ...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...
The observations made by the Mars Atmosphere and Volatile EvolutioN spacecraft in the topside (≥200 ...
An asymmetrical pileup of the interplanetary magnetic field leads to an additional draping of the fi...
International audienceAnalysis of MAVEN/STATIC observations in the Martian upper atmosphere, bounded...
The Martian magnetosphere contains elements of induced and intrinsic origin. To display them one mus...
International audienceThe Martian magnetosphere contains elements of induced and intrinsic origin. T...
Mars does not currently have a global dipole magnetic field, and consequently, the atmosphere of the...
International audienceMAVEN observations show that the global spatial distribution of ions precipita...
Mars is a small body in the solar wind with no intrinsic magnetic field but strong crustal magnetic ...
International audienceDirect interaction between the solar wind (SW) and the Martian upper atmospher...
International audienceWe report the indirect detection of an induced magnetic field in the ionospher...