We study the diffusion of cosmic rays (CRs) in turbulent magnetic fields using test particle simulations. Electromagnetic fields are produced in direct numerical MHD simulations of turbulence and used as an input for particle tracing, particle feedback on turbulence being ignored. Statistical transport coefficients from the test particle runs are compared with earlier analytical predictions. We find qualitative correspondence between them in various aspects of CR diffusion. In the incompressible case that we consider in this paper, the dominant scattering mechanism is the non-resonant mirror interactions with the slow-mode perturbations. Perpendicular transport roughly agrees with being produced by magnetic field wandering.http://gateway.we...
The transport of charged particles in disorganised magnetic fields is an important issue which conce...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
We determine numerically the parallel, perpendicular, and antisymmetric diffusion coefficients for c...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
Understanding the transport of energetic cosmic rays belongs to the most challenging topics in astro...
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...
Thesis (Ph.D. (Physics))--North-West University, Potchefstroom Campus, 2006.In the present study we ...
In this research, the diffusion of high energy cosmic rays (protons) in turbulent magnetic fields wa...
We present a new analysis of the transport of cosmic rays in a turbulent magnetic Ðeld that varies i...
Cosmic ray (CR) transport and acceleration is essential for many astrophysical problems, e.g., CMB f...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
Abstract: The transport of ultra-relativistic charged particles in both regular and turbulent magnet...
The transport of charged particles in disorganised magnetic fields is an important issue which conce...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
We determine numerically the parallel, perpendicular, and antisymmetric diffusion coefficients for c...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
This paper studies cosmic-ray (CR) transport in magnetohydrodynamic (MHD) turbulence. CR transport i...
Understanding the transport of energetic cosmic rays belongs to the most challenging topics in astro...
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...
Thesis (Ph.D. (Physics))--North-West University, Potchefstroom Campus, 2006.In the present study we ...
In this research, the diffusion of high energy cosmic rays (protons) in turbulent magnetic fields wa...
We present a new analysis of the transport of cosmic rays in a turbulent magnetic Ðeld that varies i...
Cosmic ray (CR) transport and acceleration is essential for many astrophysical problems, e.g., CMB f...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
Abstract: The transport of ultra-relativistic charged particles in both regular and turbulent magnet...
The transport of charged particles in disorganised magnetic fields is an important issue which conce...
Cosmic-ray transport in astrophysical environments is often dominated by the diffusion of particles ...
We determine numerically the parallel, perpendicular, and antisymmetric diffusion coefficients for c...