Recent observations of ionospheric flows by ground-based radars, in particular by the European Incoherent Scauer (EISCAT) facility using the "Polar " experiment, together with previous analyses of the response of geomagnetic disturbance to variations of the interplanetary magnetic field (IMF), suggest that convection in the high-latitude ionosphere should be considered to be the sum of two intrinsically time-dependent patterns, one driven by solar wind-magnetosphere coupling at the dayside magnetopause, the other by the release of energy in the geomagnetic tail (mainly by dayside and nightside reconnection, respectively). The flows driven by dayside coupling are largest on the dayside, where they usually dominate, are associated w...
We report on the response of high-latitude ionospheric convection during the magnetic storm of March...
Recent radar studies of field—perpendicular flows in the auroral ionosphere, in conjunction with obs...
Recent radar studies of field-perpendicular flows in the auroral ionosphere, in conjunction with obs...
This review presents recent observations of high-latitude ionospheric plasma convection, obtained us...
At high latitudes plasma motions driven by the interaction of the magnetosphere with the solar wind ...
At high latitudes plasma motions driven by the interaction of the magnetosphere with the solar wind ...
At high latitudes plasma motions driven by the interaction of the magnetosphere with the solar wind ...
Recent observations of ionospheric flows by ground-based radars, in particular by the European Incoh...
Studies have been conducted on the flow in the high-latitude ionosphere and how this depends on the ...
Abstract. We have examined the dayside high-latitude convection response to a sudden southward turni...
We investigate the dayside auroral dynamics and ionospheric convection during an interval when the ...
We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar o...
We report on the response of high-latitude ionospheric convection during the magnetic storm of Marc...
Simultaneous observations in the high-latitude ionosphere and in the near-Earth interplanetary mediu...
The convection of plasma in the high-latitude ionosphere is strongly a2ected by the interplanetary m...
We report on the response of high-latitude ionospheric convection during the magnetic storm of March...
Recent radar studies of field—perpendicular flows in the auroral ionosphere, in conjunction with obs...
Recent radar studies of field-perpendicular flows in the auroral ionosphere, in conjunction with obs...
This review presents recent observations of high-latitude ionospheric plasma convection, obtained us...
At high latitudes plasma motions driven by the interaction of the magnetosphere with the solar wind ...
At high latitudes plasma motions driven by the interaction of the magnetosphere with the solar wind ...
At high latitudes plasma motions driven by the interaction of the magnetosphere with the solar wind ...
Recent observations of ionospheric flows by ground-based radars, in particular by the European Incoh...
Studies have been conducted on the flow in the high-latitude ionosphere and how this depends on the ...
Abstract. We have examined the dayside high-latitude convection response to a sudden southward turni...
We investigate the dayside auroral dynamics and ionospheric convection during an interval when the ...
We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar o...
We report on the response of high-latitude ionospheric convection during the magnetic storm of Marc...
Simultaneous observations in the high-latitude ionosphere and in the near-Earth interplanetary mediu...
The convection of plasma in the high-latitude ionosphere is strongly a2ected by the interplanetary m...
We report on the response of high-latitude ionospheric convection during the magnetic storm of March...
Recent radar studies of field—perpendicular flows in the auroral ionosphere, in conjunction with obs...
Recent radar studies of field-perpendicular flows in the auroral ionosphere, in conjunction with obs...