We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution (PAD) of energetic electrons (~30 keV - 1 MeV) in the outer radiation belt (L > 3) during CME- and CIR-driven geomagnetic storms using Van Allen Probe measurements. We selected geomagnetic storms based on minimum of SYM-H being less than -50 nT and classified the storms according to their drivers. Thus, we obtained 23 CME- and 24 CIR-driven storms. During the storm intervals, pitch angle resolved electron flux measurements are obtained from the MagEIS instrument on-board Van Allen Probe-A spacecraft. We assume symmetric pitch angle distributions around 90 degree pitch angle and fit the observed PADs with Legendre polynomials after propagatin...
Coronal mass ejection (CME)-driven or corotating interaction region (CIR)-driven storms can change t...
Electron measurements on board six spacecraft in geosynchronous orbit are superposed-epoch analyzed ...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
Fifteen months of pitch angle resolved Van Allen Probes Relativistic Electron-Proton Telescope (REPT...
The CME's structure of solar wind (interplanetary magnetic field) is different from CIR's....
The outer Van Allen radiation belt is an extremely variable region of highly energetic electrons in ...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
We use Van Allen Probes electron data during 70 geomagnetic storms to examine the response of equato...
[1] We investigate the pitch angle distributions of 0.15-1.58 MeV electrons observed during the 9-15...
In this study, we report dynamic evolutions of 30-500 keV energetic electrons (in flux and pitch-ang...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
Coronal mass ejection (CME)-driven or corotating interaction region (CIR)-driven storms can change t...
Electron measurements on board six spacecraft in geosynchronous orbit are superposed-epoch analyzed ...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
We present a statistical investigation (September 2012 - September 2017) of pitch angle distribution...
Fifteen months of pitch angle resolved Van Allen Probes Relativistic Electron-Proton Telescope (REPT...
The CME's structure of solar wind (interplanetary magnetic field) is different from CIR's....
The outer Van Allen radiation belt is an extremely variable region of highly energetic electrons in ...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
We use Van Allen Probes electron data during 70 geomagnetic storms to examine the response of equato...
[1] We investigate the pitch angle distributions of 0.15-1.58 MeV electrons observed during the 9-15...
In this study, we report dynamic evolutions of 30-500 keV energetic electrons (in flux and pitch-ang...
A statistical study was conducted of Earth's radiation belt electron response to geomagnetic storms ...
Coronal mass ejection (CME)-driven or corotating interaction region (CIR)-driven storms can change t...
Electron measurements on board six spacecraft in geosynchronous orbit are superposed-epoch analyzed ...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...