Using a particle‐in‐cell code, we study the diffusive response of electrons due to wave‐particle interactions with whistler‐mode waves. The relatively simple configuration of field‐aligned waves in a cold plasma is used in order to benchmark our novel method, and to compare with previous works that used a different modelling technique. In this boundary‐value problem, incoherent whistler‐mode waves are excited at the domain boundary, and then propagate through the ambient plasma. Electron diffusion characteristics are directly extracted from particle data across all available energy and pitch‐angle space. The ‘nature’ of the diffusive response is itself a function of energy and pitch‐angle, such that the rate of diffusion is not always const...
In the Outer Radiation Belt, the acceleration and loss of high‐energy electrons is largely controlle...
Wave particle interactions play an important role in controlling the dynamics of the radiation belts...
We present the first relativistic electron pitch-angle and momentum diffusion rates for scattering b...
Using a particle‐in‐cell code, we study the diffusive response of electrons due to wave‐particle int...
Using a particle-in-cell code, we study the diffusive response of electrons due to wave particle int...
Test particle codes indicate that electron dynamics due to interactions with low amplitude incoheren...
Test-particle codes indicate that electron dynamics due to interactions with low amplitude incoheren...
Test particle codes indicate that electron dynamics due to interactions with low amplitude incoheren...
This is the author accepted manuscript. The final version is available from Cambridge University Pre...
Kinetic wave-particle interactions in Earth's outer radiation belt energize and scatter high-energy ...
We study the wave-particle interactions between lower band chorus whistlers and an anisotropic tenuo...
Radiation belt codes evolve electron dynamics due to resonant wave‐particle interactions. It is not ...
ABSTRACT Diffusion rates are strongly dependent on the ratio between the electron plasma and gyro-fr...
International audienceResonances with electromagnetic whistler-mode waves are the primary driver for...
Whistler-mode waves play an important role in pitch-angle scattering of electrons in the Earth's mag...
In the Outer Radiation Belt, the acceleration and loss of high‐energy electrons is largely controlle...
Wave particle interactions play an important role in controlling the dynamics of the radiation belts...
We present the first relativistic electron pitch-angle and momentum diffusion rates for scattering b...
Using a particle‐in‐cell code, we study the diffusive response of electrons due to wave‐particle int...
Using a particle-in-cell code, we study the diffusive response of electrons due to wave particle int...
Test particle codes indicate that electron dynamics due to interactions with low amplitude incoheren...
Test-particle codes indicate that electron dynamics due to interactions with low amplitude incoheren...
Test particle codes indicate that electron dynamics due to interactions with low amplitude incoheren...
This is the author accepted manuscript. The final version is available from Cambridge University Pre...
Kinetic wave-particle interactions in Earth's outer radiation belt energize and scatter high-energy ...
We study the wave-particle interactions between lower band chorus whistlers and an anisotropic tenuo...
Radiation belt codes evolve electron dynamics due to resonant wave‐particle interactions. It is not ...
ABSTRACT Diffusion rates are strongly dependent on the ratio between the electron plasma and gyro-fr...
International audienceResonances with electromagnetic whistler-mode waves are the primary driver for...
Whistler-mode waves play an important role in pitch-angle scattering of electrons in the Earth's mag...
In the Outer Radiation Belt, the acceleration and loss of high‐energy electrons is largely controlle...
Wave particle interactions play an important role in controlling the dynamics of the radiation belts...
We present the first relativistic electron pitch-angle and momentum diffusion rates for scattering b...