Radiation belt dynamics have been modeled by the modified Fokker-Planck diffusion equation with sources from the low-energy plasma sheet population and losses to the atmosphere and magnetopause. We perform a coupled simulation of the Rice Convection Model (RCM) and Versatile Electron Radiation Belt (VERB) code. The RCM models magnetospheric convection and provides a low-energy electron seed population for the VERB diffusion code simulations of the Earth's radiation belts. VERB simulations are driven by the realistic time-dependent electron seed population and by the Kp index, which is used to specify rates of diffusion by ultralow frequency (ULF) and very low frequency wave activity and, therefore, diffusion processes. Radial diffusion is p...
Satellite observations have shown that fluxes of relativistic electrons in the earth's radiation bel...
International audienceModeling the spatiotemporal evolution of relativistic electron fluxes trapped ...
[1] Using recently published electron phase space densities (PSD) as a function of L * (L* is approx...
Relativistic (>1 MeV) electron flux increases in the Earth's radiation belts are significantly under...
In the Earth's radiation belts the flux of relativistic electrons is highly variable, sometimes chan...
The outer radiation belt is often enhanced during storms while the inner belt is usually considered ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94658/1/jgra21291.pd
We present results from our three-dimensional (3-D) simulations using the Salammbô electron radiatio...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
The outer radiation belt is a region of space comprising highly energetic electrons. During periods...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
The fluxes of energetic particles in the radiation belts are found to be strongly controlled by the ...
Abstract Local acceleration driven by whistler-mode chorus waves is fundamentally important for acce...
Energetic electrons (≥50 keV) are injected into the slot region (2 < L < 4) between the inner and ou...
Electromagnetic ultralow-frequency (ULF) waves are known to play a substantial role in radial transp...
Satellite observations have shown that fluxes of relativistic electrons in the earth's radiation bel...
International audienceModeling the spatiotemporal evolution of relativistic electron fluxes trapped ...
[1] Using recently published electron phase space densities (PSD) as a function of L * (L* is approx...
Relativistic (>1 MeV) electron flux increases in the Earth's radiation belts are significantly under...
In the Earth's radiation belts the flux of relativistic electrons is highly variable, sometimes chan...
The outer radiation belt is often enhanced during storms while the inner belt is usually considered ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94658/1/jgra21291.pd
We present results from our three-dimensional (3-D) simulations using the Salammbô electron radiatio...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
The outer radiation belt is a region of space comprising highly energetic electrons. During periods...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
The fluxes of energetic particles in the radiation belts are found to be strongly controlled by the ...
Abstract Local acceleration driven by whistler-mode chorus waves is fundamentally important for acce...
Energetic electrons (≥50 keV) are injected into the slot region (2 < L < 4) between the inner and ou...
Electromagnetic ultralow-frequency (ULF) waves are known to play a substantial role in radial transp...
Satellite observations have shown that fluxes of relativistic electrons in the earth's radiation bel...
International audienceModeling the spatiotemporal evolution of relativistic electron fluxes trapped ...
[1] Using recently published electron phase space densities (PSD) as a function of L * (L* is approx...