We compare the open flux content of the magnetosphere, quantified by measurements of the size of the northern ionospheric polar cap, with the radius of the magnetotail at X ≈ −25 R{subscript E], deduced from observations made by the IMP-8 spacecraft. During an 8-hour period of observation we estimate that the proportion of terrestrial flux that is interconnected with the solar wind varies between 12 and 2.5%. This latter extreme, representing an almost closed magnetosphere, follows the incidence of a solar wind dynamic pressure step, the onset of a large substorm, and a 3-hour period of northward IMF. The deflated and compressed magnetotail is predicted to have a radius as small as 12 R[subscript E] at this time. The magnetotail does not re...
Simultaneous energetic particle and magnetic field observations from the GEOTAIL spacecraft in the d...
Recent radar studies of field-perpendicular flows in the auroral ionosphere, in conjunction with obs...
This paper provides a brief review of the understanding of the coupled solar wind–magnetosphere–iono...
This study employs observations from several sources to determine the location of the polar cap ...
We quantify the amount of open magnetic flux in the magnetosphere from observations of the auroral p...
A statistical study of ten years of solar wind particle and magnetic field observations, ionospheric...
A simple model is presented which allows the profile of open flux within the magnetotail lobes to be...
The expanding-contracting polar cap paradigm relates the dayside and nightside rates of magnetic rec...
Quantitative relationships allowing one to compute the lobe magnetic field, flaring angle and tail r...
This thesis studies the large-scale dynamics in the Earth's magnetosphere due to solar wind driving....
[1] The development of global magnetospheric models, such as Space Weather Modeling Framework (SWMF)...
This thesis investigates the effect that northward IMF (Interplanetary Magnetic Field) has on the Ea...
We study the topological structure of the magnetosphere for northward IMF. Using a magnetospheric m...
International audienceWe present a follow up study of the sensitivity of the Earth's magnetosphere t...
One of the most significant observations associated with a sharp enhancement in solar wind dynamic p...
Simultaneous energetic particle and magnetic field observations from the GEOTAIL spacecraft in the d...
Recent radar studies of field-perpendicular flows in the auroral ionosphere, in conjunction with obs...
This paper provides a brief review of the understanding of the coupled solar wind–magnetosphere–iono...
This study employs observations from several sources to determine the location of the polar cap ...
We quantify the amount of open magnetic flux in the magnetosphere from observations of the auroral p...
A statistical study of ten years of solar wind particle and magnetic field observations, ionospheric...
A simple model is presented which allows the profile of open flux within the magnetotail lobes to be...
The expanding-contracting polar cap paradigm relates the dayside and nightside rates of magnetic rec...
Quantitative relationships allowing one to compute the lobe magnetic field, flaring angle and tail r...
This thesis studies the large-scale dynamics in the Earth's magnetosphere due to solar wind driving....
[1] The development of global magnetospheric models, such as Space Weather Modeling Framework (SWMF)...
This thesis investigates the effect that northward IMF (Interplanetary Magnetic Field) has on the Ea...
We study the topological structure of the magnetosphere for northward IMF. Using a magnetospheric m...
International audienceWe present a follow up study of the sensitivity of the Earth's magnetosphere t...
One of the most significant observations associated with a sharp enhancement in solar wind dynamic p...
Simultaneous energetic particle and magnetic field observations from the GEOTAIL spacecraft in the d...
Recent radar studies of field-perpendicular flows in the auroral ionosphere, in conjunction with obs...
This paper provides a brief review of the understanding of the coupled solar wind–magnetosphere–iono...