We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar observations of plasma convection in the Northern Hemisphere from the years 2000–2006, to investigate the timescales of interplanetary magnetic field (IMF) control of ionospheric convection and associated magnetospheric dynamics. We parameterize the convection observations by IMF clock angle, θ (the angle between geocentric solar magnetic (GSM) north and the projection of the IMF vector onto the GSM Y-Z plane), and by an IMF timescale, τB (the length of time that a similar clock angle has been maintained prior to the convection observations being made). We find that the nature of the ionospheric convection changes with IMF clock angle, as expe...
The convection of plasma in the high-latitude ionosphere is strongly a2ected by the interplanetary m...
We characterize the response of the quiet time (no substorms or storms) large-scale ionospheric tran...
It is known that the magnetic field of the Earth's closed magnetosphere can be highly displaced from...
We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar o...
We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar o...
We present data from conjugate SuperDARN radars describing the high-latitude ionosphere's response t...
[1] We apply a numerical model of time-dependent ionospheric convection to two directly driven recon...
Past studies have demonstrated that the interplanetary magnetic field (IMF) By component introduces ...
The By-component of the interplanetary magnetic field (IMF) has consistently been shown to exert sig...
International audienceWe present data from conjugate SuperDARN radars describing the high-latitude i...
We present SuperDARN radar observations of the nightside high-latitude ionospheric flow during two 6...
Recent observations of ionospheric flows by ground-based radars, in particular by the European Incoh...
International audienceA fully time-dependent ionospheric convection model, in which electric potenti...
We use SuperDARN data to study high-latitude ionospheric convection over a three hour period (start...
It is well known that convection electric fields have an important effect on the ionosphere at high ...
The convection of plasma in the high-latitude ionosphere is strongly a2ected by the interplanetary m...
We characterize the response of the quiet time (no substorms or storms) large-scale ionospheric tran...
It is known that the magnetic field of the Earth's closed magnetosphere can be highly displaced from...
We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar o...
We exploit a database of high-latitude ionospheric electric potential patterns, derived from radar o...
We present data from conjugate SuperDARN radars describing the high-latitude ionosphere's response t...
[1] We apply a numerical model of time-dependent ionospheric convection to two directly driven recon...
Past studies have demonstrated that the interplanetary magnetic field (IMF) By component introduces ...
The By-component of the interplanetary magnetic field (IMF) has consistently been shown to exert sig...
International audienceWe present data from conjugate SuperDARN radars describing the high-latitude i...
We present SuperDARN radar observations of the nightside high-latitude ionospheric flow during two 6...
Recent observations of ionospheric flows by ground-based radars, in particular by the European Incoh...
International audienceA fully time-dependent ionospheric convection model, in which electric potenti...
We use SuperDARN data to study high-latitude ionospheric convection over a three hour period (start...
It is well known that convection electric fields have an important effect on the ionosphere at high ...
The convection of plasma in the high-latitude ionosphere is strongly a2ected by the interplanetary m...
We characterize the response of the quiet time (no substorms or storms) large-scale ionospheric tran...
It is known that the magnetic field of the Earth's closed magnetosphere can be highly displaced from...