International audienceThe lifetimes of electrons trapped in Earth's radiation belts can be calculated from quasi-linear pitch-angle diffusion by whistler-mode waves, provided that their frequency spectrum is broad enough and/or their average amplitude is not too large. Extensive comparisons between improved analytical lifetime estimates and full numerical calculations have been performed in a broad parameter range representative of a large part of the magnetosphere from L ~ 2 to 6. The effects of observed very oblique whistler waves are taken into account in both numerical and analytical calculations. Analytical lifetimes (and pitch-angle diffusion coefficients) are found to be in good agreement with full numerical calculations based on CRR...
International audienceChorus waves are among the most important natural electromagnetic emissions in...
[1] First-order estimates indicate that the lifetime of energetic (a few MeV) electrons in the inner...
Supporting information for "VLF Transmitters and Lightning Generated Whistlers 2: Diffusion of Radia...
International audienceThe lifetimes of electrons trapped in Earth's radiation belts can be calculate...
International audience[1] The loss of relativistic electrons from the Earth's radiation belts can be...
International audience[1] We calculated the electron pitch-angle diffusion coefficients in the outer...
International audience[1] The redistribution of energy during the recovery phase of geomagnetic stor...
International audienceThe distribution of trapped energetic electrons inside the Earth’s radiation b...
International audience[1] Quantifying the loss of relativistic electrons from the Earth's radiation ...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
International audienceGlobal statistics of the amplitude distributions of hiss, lightning-generated,...
Wave-particle interactions lead to the loss of relativistic electrons from the outer radiation belt ...
International audienceChorus waves are among the most important natural electromagnetic emissions in...
[1] First-order estimates indicate that the lifetime of energetic (a few MeV) electrons in the inner...
Supporting information for "VLF Transmitters and Lightning Generated Whistlers 2: Diffusion of Radia...
International audienceThe lifetimes of electrons trapped in Earth's radiation belts can be calculate...
International audience[1] The loss of relativistic electrons from the Earth's radiation belts can be...
International audience[1] We calculated the electron pitch-angle diffusion coefficients in the outer...
International audience[1] The redistribution of energy during the recovery phase of geomagnetic stor...
International audienceThe distribution of trapped energetic electrons inside the Earth’s radiation b...
International audience[1] Quantifying the loss of relativistic electrons from the Earth's radiation ...
Outer zone radiation belt electrons can undergo gyroresonant interaction with various magnetospheric...
International audienceGlobal statistics of the amplitude distributions of hiss, lightning-generated,...
Wave-particle interactions lead to the loss of relativistic electrons from the outer radiation belt ...
International audienceChorus waves are among the most important natural electromagnetic emissions in...
[1] First-order estimates indicate that the lifetime of energetic (a few MeV) electrons in the inner...
Supporting information for "VLF Transmitters and Lightning Generated Whistlers 2: Diffusion of Radia...