The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of Earth’s magnetic field is dominating. The disturbances that are created in this interaction propagate along magnetic field lines and interact with the ionosphere–thermosphere system. At ionospheric altitudes, the Earth’s field deviates significantly from a dipole. North–South asymmetries in the magnetic field imply that the magnetosphere–ionosphere–thermosphere (M–I–T) coupling is different in the two hemispheres. In this paper we review the primary differences in the magnetic field at polar latitudes, and the consequences that these have for the M–I–T coupling. We focus on two interhemispheric differences which are thought to have the stron...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
We statistically investigated features of the field-aligned current (FAC) distribution in plasma she...
Previous studies have revealed that ion drift and neutral wind speeds at ~400 km in the polar cap (>...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
[1] The nondipolar portions of the Earth’s main magnetic field constitute substantial differences be...
The nondipolar portions of the Earth's main magnetic field constitute substantial differences betwee...
Hemispheric differences in the structure and dynamics of the polar regions of the thermosphere and i...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
We statistically investigated features of the field-aligned current (FAC) distribution in plasma she...
Previous studies have revealed that ion drift and neutral wind speeds at ~400 km in the polar cap (>...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
[1] The nondipolar portions of the Earth’s main magnetic field constitute substantial differences be...
The nondipolar portions of the Earth's main magnetic field constitute substantial differences betwee...
Hemispheric differences in the structure and dynamics of the polar regions of the thermosphere and i...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
[1] We statistically investigated features of the field-aligned current (FAC) distribution in plasma...
We statistically investigated features of the field-aligned current (FAC) distribution in plasma she...
Previous studies have revealed that ion drift and neutral wind speeds at ~400 km in the polar cap (>...