Mars has a complex magnetic topology where crustal magnetic fields can interact with the solar wind magnetic field to form magnetic cusps. On the nightside, solar wind electron precipitation can produce enhanced ionization at cusps while closed field regions adjacent to cusps can be devoid of significant ionization. Using an electron transport model, we calculate the spatial structure of the nightside ionosphere of Mars using Mars Global Surveyor electron measurements as input. We find that localized regions of enhanced ionospheric density can occur at magnetic cusps adjacent to low density regions. Under this configuration, thermospheric winds can drive ionospheric electrojets. Collisional ions move in the direction of the neutral winds wh...
The magnetic environment of Mars is a complex and unique mix of draped interplanetary magnetic field...
AbstractSince the internally-generated magnetic field of Mars is weak, strong coupling is expected b...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...
a b s t r a c t Using an electron transport model, we calculate the electron density of the electron...
Since the internally-generated magnetic field of Mars is weak, strong coupling is expected between t...
International audienceThe Mars Atmosphere and Volatile Evolution mission has obtained comprehensive ...
The correlation between space environment conditions and the properties of escaping ions is a centra...
International audienceThe precipitation of suprathermal electrons is the dominant external source of...
We analyze the solar wind interaction with Mars through examination of Mars Global Surveyor Magnetom...
We analyze the solar wind interaction with Mars through examination of Mars Global Surveyor Magnetom...
International audienceSince the internally-generated magnetic field of Mars is weak, strong coupling...
Mars is a small body in the solar wind with no intrinsic magnetic field but strong crustal magnetic ...
International audienceWe model expected dynamo currents above, and resulting magnetic field profiles...
The magnetic environment of Mars is a complex and unique mix of draped interplanetary magnetic field...
AbstractSince the internally-generated magnetic field of Mars is weak, strong coupling is expected b...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...
a b s t r a c t Using an electron transport model, we calculate the electron density of the electron...
Since the internally-generated magnetic field of Mars is weak, strong coupling is expected between t...
International audienceThe Mars Atmosphere and Volatile Evolution mission has obtained comprehensive ...
The correlation between space environment conditions and the properties of escaping ions is a centra...
International audienceThe precipitation of suprathermal electrons is the dominant external source of...
We analyze the solar wind interaction with Mars through examination of Mars Global Surveyor Magnetom...
We analyze the solar wind interaction with Mars through examination of Mars Global Surveyor Magnetom...
International audienceSince the internally-generated magnetic field of Mars is weak, strong coupling...
Mars is a small body in the solar wind with no intrinsic magnetic field but strong crustal magnetic ...
International audienceWe model expected dynamo currents above, and resulting magnetic field profiles...
The magnetic environment of Mars is a complex and unique mix of draped interplanetary magnetic field...
AbstractSince the internally-generated magnetic field of Mars is weak, strong coupling is expected b...
Analysis of Mars Atmosphere and Volatile Evolution (MAVEN)/Supra‐Thermal And Thermal Ion Composition...