International audienceWe study average characteristics of plasma sheet convection in the middle tail during different magnetospheric states (Steady Magnetospheric Convection, SMC, and substorms) using simultaneous magnetotail (Geotail, 15-35 RE downtail) and solar wind (Wind spacecraft) observations during 3.5 years. (1) A large data set allowed us to obtain the average values of the plasma sheet magnetic flux transfer rate (Ey and directly compare it with the dayside transfer rate (Emod for different magnetospheric states. The results confirm the magnetic flux imbalance model suggested by Russell and McPherron (1973), namely: during SMC periods the day-to-night flux transport rate equals the global Earthward plasma sheet convection; during...
International audienceData from Equator-S and Geotail are used to study the dynamics of the plasma s...
We study the role of substorms and steady magnetospheric convection (SMC) in magnetic flux transport...
An attempt is made to understand some of the magnetotail dynamics by using simultaneous observations...
We study average characteristics of plasma sheet convection in the middle tail during different mag...
International audienceQuantitative relationships allowing one to compute the lobe magnetic field, fl...
International audienceThe plasma sheet plays a key role during magnetic storms because it is the bot...
Inner magnetosphere magnetic field and plasma flow data are examined during 228 steady magnetospheri...
Magnetic reconnection between Earth's magnetosphere and the solar wind results in several modes of r...
We investigate the plasma sheet pressure variations in the near‐Earth magnetotail (radius distance, ...
The purpose of this study is to quantify how solar-wind conditions affect the energy and plasma tran...
Changes in tail energy density during substorms in the magnetotail are given. In addition to plasma ...
Energy-principle analysis performed on two-dimensional, self-consistent solutions for magnetospheric...
We study the role of substorms and steady magnetospheric convection (SMC) in magnetic flux transport...
Before a magnetospheric substorm and during its early phases the magnetic field magnitude in the geo...
During substorm growth phases, magnetic reconnection at the magnetopause extracts ~1015 J from the s...
International audienceData from Equator-S and Geotail are used to study the dynamics of the plasma s...
We study the role of substorms and steady magnetospheric convection (SMC) in magnetic flux transport...
An attempt is made to understand some of the magnetotail dynamics by using simultaneous observations...
We study average characteristics of plasma sheet convection in the middle tail during different mag...
International audienceQuantitative relationships allowing one to compute the lobe magnetic field, fl...
International audienceThe plasma sheet plays a key role during magnetic storms because it is the bot...
Inner magnetosphere magnetic field and plasma flow data are examined during 228 steady magnetospheri...
Magnetic reconnection between Earth's magnetosphere and the solar wind results in several modes of r...
We investigate the plasma sheet pressure variations in the near‐Earth magnetotail (radius distance, ...
The purpose of this study is to quantify how solar-wind conditions affect the energy and plasma tran...
Changes in tail energy density during substorms in the magnetotail are given. In addition to plasma ...
Energy-principle analysis performed on two-dimensional, self-consistent solutions for magnetospheric...
We study the role of substorms and steady magnetospheric convection (SMC) in magnetic flux transport...
Before a magnetospheric substorm and during its early phases the magnetic field magnitude in the geo...
During substorm growth phases, magnetic reconnection at the magnetopause extracts ~1015 J from the s...
International audienceData from Equator-S and Geotail are used to study the dynamics of the plasma s...
We study the role of substorms and steady magnetospheric convection (SMC) in magnetic flux transport...
An attempt is made to understand some of the magnetotail dynamics by using simultaneous observations...