We study the response of the outer Van Allen radiation belt during an intense magnetic storm on 15-22 February 2014. Four interplanetary coronal mass ejections (ICMEs) arrived at Earth, of which the three last ones were interacting. Using data from the Van Allen Probes, we report the first detailed investigation of electron fluxes from source (tens of kiloelectron volts) to core (megaelectron volts) energies and possible loss and acceleration mechanisms as a response to substructures (shock, sheath and ejecta, and regions of shock-compressed ejecta) in multiple interacting ICMEs. After an initial enhancement induced by a shock compression of the magnetosphere, core fluxes strongly depleted and stayed low for 4 days. This sustained depletion...
The Earth's electron outer radiation belt is a highly variable region in which the populations can v...
Coronal mass ejection (CME)-driven or corotating interaction region (CIR)-driven storms can change t...
Large geomagnetic storms are associated with electron population changes in the outer radiation belt...
We study the response of the outer Van Allen radiation belt during an intense magnetic storm on 15-2...
The energetic electron content in the Van Allen radiation belts surrounding the Earth can vary drama...
Recently, it has been established that interplanetary coronal mass ejections (ICMEs) can dramaticall...
The outer Van Allen radiation belt is an environment with intense variability due to complex mechani...
Coronal mass ejection driven sheath regions are one of the key drivers of drastic outer radiation be...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
The outer Van Allen radiation belt is an extremely variable region of highly energetic electrons in ...
Trapped electrons in Earth's outer Van Allen radiation belt are influenced profoundly by solar pheno...
The near‐relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
International audience<p>The most geoeffective storms in the Space Age have been driven solely...
The near-relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
The Earth's electron outer radiation belt is a highly variable region in which the populations can v...
Coronal mass ejection (CME)-driven or corotating interaction region (CIR)-driven storms can change t...
Large geomagnetic storms are associated with electron population changes in the outer radiation belt...
We study the response of the outer Van Allen radiation belt during an intense magnetic storm on 15-2...
The energetic electron content in the Van Allen radiation belts surrounding the Earth can vary drama...
Recently, it has been established that interplanetary coronal mass ejections (ICMEs) can dramaticall...
The outer Van Allen radiation belt is an environment with intense variability due to complex mechani...
Coronal mass ejection driven sheath regions are one of the key drivers of drastic outer radiation be...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
The outer Van Allen radiation belt is an extremely variable region of highly energetic electrons in ...
Trapped electrons in Earth's outer Van Allen radiation belt are influenced profoundly by solar pheno...
The near‐relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
International audience<p>The most geoeffective storms in the Space Age have been driven solely...
The near-relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
The Earth's electron outer radiation belt is a highly variable region in which the populations can v...
Coronal mass ejection (CME)-driven or corotating interaction region (CIR)-driven storms can change t...
Large geomagnetic storms are associated with electron population changes in the outer radiation belt...