An EMIC wave event observed by the CRRES spacecraft during an active period on 11 August 1991 was studied in order to estimate electron minimum interaction kinetic energy Emin and using quasilinear theory, to calculate the resonant scattering rate Dαα. The wave packet semibandwidth δω/2π full-width half maximum ranged from 0.06 Hz to 0.27 Hz. Resonant scattering was assumed to occur over the frequency interval ωm - δω to ωm + δω. Assuming typical stormtime ion concentrations, the use of realistic wave spectral properties when compared to only using the central wave frequency ωm results in 3 to 4 times as many wave packets that are able to interact with relativistic electrons below ∼2 MeV. Values of D αα associated with two of the wave packe...
Relativistic electron losses in Earth's radiation belts are usually attributed to electron resonant ...
[1] We consider the effect of oblique electromagnetic ion cyclotron (EMIC) waves on relativistic ele...
Electron flux in the Earth's outer radiation belt is highly variable due to a delicate balance betwe...
Electromagnetic ion cyclotron (EMIC) waves which propagate at frequencies below the proton gyrofrequ...
The dynamic variability of Earth's outer radiation belt is due to the competition among various part...
Electromagnetic ion cyclotron (EMIC) waves which propagate at frequencies below the proton gyrofrequ...
[1] There is still much to be understood about the processes contributing to relativistic electron e...
Abstract We study the effect of electromagnetic ion cyclotron (EMIC) waves on the loss and pitch ang...
To improve our understanding of the role of electromagnetic ion cyclotron (EMIC) waves in radiation ...
Electromagnetic Ion Cyclotron (EMIC) waves cause electron loss in the radiation belts by resonating ...
We present the equatorial and bounce average pitch angle diffusion coefficients for scattering of re...
Geomagnetic storms can either increase or decrease relativistic electron fluxes in the outer radiati...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
Abstract There has been increasing evidence for pitch angle scattering of relativistic electrons by...
A theoretical study of the propagation of left hand polarized shear Alfvén waves in spatially decrea...
Relativistic electron losses in Earth's radiation belts are usually attributed to electron resonant ...
[1] We consider the effect of oblique electromagnetic ion cyclotron (EMIC) waves on relativistic ele...
Electron flux in the Earth's outer radiation belt is highly variable due to a delicate balance betwe...
Electromagnetic ion cyclotron (EMIC) waves which propagate at frequencies below the proton gyrofrequ...
The dynamic variability of Earth's outer radiation belt is due to the competition among various part...
Electromagnetic ion cyclotron (EMIC) waves which propagate at frequencies below the proton gyrofrequ...
[1] There is still much to be understood about the processes contributing to relativistic electron e...
Abstract We study the effect of electromagnetic ion cyclotron (EMIC) waves on the loss and pitch ang...
To improve our understanding of the role of electromagnetic ion cyclotron (EMIC) waves in radiation ...
Electromagnetic Ion Cyclotron (EMIC) waves cause electron loss in the radiation belts by resonating ...
We present the equatorial and bounce average pitch angle diffusion coefficients for scattering of re...
Geomagnetic storms can either increase or decrease relativistic electron fluxes in the outer radiati...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
Abstract There has been increasing evidence for pitch angle scattering of relativistic electrons by...
A theoretical study of the propagation of left hand polarized shear Alfvén waves in spatially decrea...
Relativistic electron losses in Earth's radiation belts are usually attributed to electron resonant ...
[1] We consider the effect of oblique electromagnetic ion cyclotron (EMIC) waves on relativistic ele...
Electron flux in the Earth's outer radiation belt is highly variable due to a delicate balance betwe...