The high energy electron population in Earth’s outer radiation belt is extremely variable, changing by multiple orders of magnitude on timescales that vary from under an hour to several weeks. These changes are typically linked to geomagnetic activity such as storms and substorms. In this study, we seek to understand how coherent changes in the radiation belt are across all radial distances, in order to provide a spatial insight into apparent global variations. We do this by calculating the correlation between fluxes on different L* measured by the PET instrument aboard the SAMPEX spacecraft for times associated with 15 large storms. Our results show that during these times, variations in the 0.63 MeV electron flux are coherent outside the...
We analyse a set of events in which both electron flux dropouts caused by magnetopause shadowing and...
We present detailed analysis of the global relativistic electron dynamics as measured by total radia...
The outer electron radiation belt is highly dynamic in space and time. Understanding the mechanisms ...
The high energy electron population in Earth’s outer radiation belt is extremely variable, changing ...
The high energy electron population in Earth's outer radiation belt is extremely variable, changing ...
The outer Van Allen radiation belt is an extremely variable region of highly energetic electrons in ...
The near-relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
The near-relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
In this study we investigate the link between precipitating electrons from the Van Allen radiation b...
The CME's structure of solar wind (interplanetary magnetic field) is different from CIR's....
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
The energetic electron content in the Van Allen radiation belts surrounding the Earth can vary drama...
Large geomagnetic storms are associated with electron population changes in the outer radiation belt...
Measurements from seven spacecraft in geosynchronous orbit are analyzed to determine the decay rate ...
Efforts to model and predict energetic electron fluxes in the radiation belts are highly sensitive t...
We analyse a set of events in which both electron flux dropouts caused by magnetopause shadowing and...
We present detailed analysis of the global relativistic electron dynamics as measured by total radia...
The outer electron radiation belt is highly dynamic in space and time. Understanding the mechanisms ...
The high energy electron population in Earth’s outer radiation belt is extremely variable, changing ...
The high energy electron population in Earth's outer radiation belt is extremely variable, changing ...
The outer Van Allen radiation belt is an extremely variable region of highly energetic electrons in ...
The near-relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
The near-relativistic electron population in the outer Van Allen radiation belt is highly dynamic an...
In this study we investigate the link between precipitating electrons from the Van Allen radiation b...
The CME's structure of solar wind (interplanetary magnetic field) is different from CIR's....
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
The energetic electron content in the Van Allen radiation belts surrounding the Earth can vary drama...
Large geomagnetic storms are associated with electron population changes in the outer radiation belt...
Measurements from seven spacecraft in geosynchronous orbit are analyzed to determine the decay rate ...
Efforts to model and predict energetic electron fluxes in the radiation belts are highly sensitive t...
We analyse a set of events in which both electron flux dropouts caused by magnetopause shadowing and...
We present detailed analysis of the global relativistic electron dynamics as measured by total radia...
The outer electron radiation belt is highly dynamic in space and time. Understanding the mechanisms ...