Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles in a magnetic field composed of both a turbulent and a mean component. This process, which is two-fold turbulent mixing in that the particle motion is stochastic with respect to the field lines, needs to be understood in order to properly model cosmic-ray signatures. One of the most important aspects in the modeling of cosmic-ray diffusion is that fully resonant scattering, the most effective such process, is only possible if the wave spectrum covers the entire range of propagation angles. By taking the wave spectrum boundaries into account, we quantify cosmic-ray diffusion parallel and perpendicular to the guide field direction at turbulence...
Cosmic ray propagation is diffusive because of pitch angle scattering by waves. We demonstrate that...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
We determine numerically the parallel, perpendicular, and antisymmetric diffusion coefficients for c...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
International audienceCosmic-ray transport in astrophysical environments is often dominated by the d...
International audienceCosmic-ray transport in astrophysical environments is often dominated by the d...
International audienceCosmic-ray transport in astrophysical environments is often dominated by the d...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
The propagation of cosmic rays can be described as a diffusive motion in most galactic environments....
The propagation of cosmic rays can be described as a diffusive motion in most galactic environments....
International audienceUnderstanding the transport of energetic cosmic rays belongs to the most chall...
International audienceUnderstanding the transport of energetic cosmic rays belongs to the most chall...
Understanding the transport of energetic cosmic rays belongs to the most challenging topics in astro...
Cosmic ray propagation is diffusive because of pitch angle scattering by waves. We demonstrate that...
Cosmic ray propagation is diffusive because of pitch angle scattering by waves. We demonstrate that...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
We determine numerically the parallel, perpendicular, and antisymmetric diffusion coefficients for c...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
International audienceCosmic-ray transport in astrophysical environments is often dominated by the d...
International audienceCosmic-ray transport in astrophysical environments is often dominated by the d...
International audienceCosmic-ray transport in astrophysical environments is often dominated by the d...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
The propagation of cosmic rays can be described as a diffusive motion in most galactic environments....
The propagation of cosmic rays can be described as a diffusive motion in most galactic environments....
International audienceUnderstanding the transport of energetic cosmic rays belongs to the most chall...
International audienceUnderstanding the transport of energetic cosmic rays belongs to the most chall...
Understanding the transport of energetic cosmic rays belongs to the most challenging topics in astro...
Cosmic ray propagation is diffusive because of pitch angle scattering by waves. We demonstrate that...
Cosmic ray propagation is diffusive because of pitch angle scattering by waves. We demonstrate that...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
We determine numerically the parallel, perpendicular, and antisymmetric diffusion coefficients for c...