A statistical study of ion upflow and field‐aligned currents (FACs) has been performed in the topside ionosphere of both hemispheres for magnetic quiet and disturbed times by using DMSP satellite observations from 2010–2013. Distributions in MLT/MLat reveal that ion upflow occurrence shows a dawn‐dusk asymmetry distribution that matches well with the Region 1 FACs. In addition, there are highest occurrence regions near noon and within the midnight auroral disturbance area, corresponding to dayside cusp and nightside auroral disturbance regions, respectively. Both the ion upflow occurrence and FAC regions expand equatorward to a wider area during disturbed times.publishedVersio
The project has shown unambiguously that auroral acceleration is caused by electric fields aligned p...
International audienceObservations from the special UK EISCAT program UFIS are presented. UFIS is a ...
In this thesis, the relationship between several high-latitude phenomena and the ionospheric conduct...
International audienceA statistical analysis of F-region and topside auroral ion upflow events is pr...
International audienceWe have determined the MLT distribution and KP dependence of the ion upflow an...
The paper presents results from the numerical study of the magnetosphere-ionosphere interactions dri...
In this study, we have derived field-aligned currents (FACs) from magnetometers onboard the Defense ...
Ion flow along geomagnetic field lines is an important mechanism in the coupling of the magnetospher...
Based on the Defense Meteorological Satellite Program (DMSP) observations during Solar Cycle 23, thi...
Large upwellings of thermal plasma are commonly observed in the high-latitude, topside ionosphere. T...
This study utilizes a novel technique to map the Defense Meteorological Satellite Program (DMSP) dat...
This research investigated how electric fields, currents, and charged particles in Earth\u27s high-l...
International audienceA combination of EISCAT CP-3 (latitude scans) and satellite (DMSP) data have b...
International audienceUsing the method of characteristics to invert ground-based data of the ground ...
We present a statistical study of plasmaspheric plumes and ionospheric outflows observed by the Clus...
The project has shown unambiguously that auroral acceleration is caused by electric fields aligned p...
International audienceObservations from the special UK EISCAT program UFIS are presented. UFIS is a ...
In this thesis, the relationship between several high-latitude phenomena and the ionospheric conduct...
International audienceA statistical analysis of F-region and topside auroral ion upflow events is pr...
International audienceWe have determined the MLT distribution and KP dependence of the ion upflow an...
The paper presents results from the numerical study of the magnetosphere-ionosphere interactions dri...
In this study, we have derived field-aligned currents (FACs) from magnetometers onboard the Defense ...
Ion flow along geomagnetic field lines is an important mechanism in the coupling of the magnetospher...
Based on the Defense Meteorological Satellite Program (DMSP) observations during Solar Cycle 23, thi...
Large upwellings of thermal plasma are commonly observed in the high-latitude, topside ionosphere. T...
This study utilizes a novel technique to map the Defense Meteorological Satellite Program (DMSP) dat...
This research investigated how electric fields, currents, and charged particles in Earth\u27s high-l...
International audienceA combination of EISCAT CP-3 (latitude scans) and satellite (DMSP) data have b...
International audienceUsing the method of characteristics to invert ground-based data of the ground ...
We present a statistical study of plasmaspheric plumes and ionospheric outflows observed by the Clus...
The project has shown unambiguously that auroral acceleration is caused by electric fields aligned p...
International audienceObservations from the special UK EISCAT program UFIS are presented. UFIS is a ...
In this thesis, the relationship between several high-latitude phenomena and the ionospheric conduct...