Electromagnetic ion cyclotron (EMIC) waves play an important role in relativistic electron losses in the radiation belts through diffusion via resonant wave‐particle interactions. We present a new approach for calculating bounce and drift‐averaged EMIC electron diffusion coefficients. We calculate bounce‐averaged diffusion coefficients, using quasi‐linear theory, for each individual Combined Release and Radiation Effects Satellite (CRRES) EMIC wave observation using fitted wave properties, the plasma density and the background magnetic field. These calculations are then combined into bounce‐averaged diffusion coefficients. The resulting coefficients therefore capture the combined effects of individual spectra and plasma properties as oppose...
Van Allen Probes measurements revealed the presence of the most unusual structures in the ultra‐rela...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
Wave particle interactions play an important role in controlling the dynamics of the radiation belts...
Electromagnetic ion cyclotron (EMIC) waves play an important role in relativistic electron losses in...
The interactions between electromagnetic ion cyclotron (EMIC) waves and relativistic electrons are i...
The interactions between electromagnetic ion cyclotron (EMIC) waves and relativistic electrons are i...
Electromagnetic Ion Cyclotron (EMIC) waves cause electron loss in the radiation belts by resonating ...
Electromagnetic ion cyclotron (EMIC) waves which propagate at frequencies below the proton gyrofrequ...
Relativistic (>1 MeV) electron flux increases in the Earth's radiation belts are significantly under...
Modern society relies substantially on satellite technology as it is involved in vital services like...
Gyroresonant wave particle interactions with electromagnetic ion cyclotron (EMIC) waves are a potent...
Abstract A new 3-D diffusion code is used to investigate the inward intrusion and slow decay of ener...
Radiation belt electrons can interact with various modes of plasma wave in their drift orbits about ...
[1] We consider the effect of oblique electromagnetic ion cyclotron (EMIC) waves on relativistic ele...
We present the equatorial and bounce average pitch angle diffusion coefficients for scattering of re...
Van Allen Probes measurements revealed the presence of the most unusual structures in the ultra‐rela...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
Wave particle interactions play an important role in controlling the dynamics of the radiation belts...
Electromagnetic ion cyclotron (EMIC) waves play an important role in relativistic electron losses in...
The interactions between electromagnetic ion cyclotron (EMIC) waves and relativistic electrons are i...
The interactions between electromagnetic ion cyclotron (EMIC) waves and relativistic electrons are i...
Electromagnetic Ion Cyclotron (EMIC) waves cause electron loss in the radiation belts by resonating ...
Electromagnetic ion cyclotron (EMIC) waves which propagate at frequencies below the proton gyrofrequ...
Relativistic (>1 MeV) electron flux increases in the Earth's radiation belts are significantly under...
Modern society relies substantially on satellite technology as it is involved in vital services like...
Gyroresonant wave particle interactions with electromagnetic ion cyclotron (EMIC) waves are a potent...
Abstract A new 3-D diffusion code is used to investigate the inward intrusion and slow decay of ener...
Radiation belt electrons can interact with various modes of plasma wave in their drift orbits about ...
[1] We consider the effect of oblique electromagnetic ion cyclotron (EMIC) waves on relativistic ele...
We present the equatorial and bounce average pitch angle diffusion coefficients for scattering of re...
Van Allen Probes measurements revealed the presence of the most unusual structures in the ultra‐rela...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
Wave particle interactions play an important role in controlling the dynamics of the radiation belts...