Superdiffusion of Cosmic Rays: Implications for Cosmic Ray Acceleration
arXiv:1308.3244 · doi:10.1088/0004-637X/784/1/38
Abstract
Diffusion of cosmic rays (CRs) is the key process of understanding their propagation and acceleration. We employ the description of spatial separation of magnetic field lines in MHD turbulence in Lazarian & Vishniac (1999) to quantify the divergence of magnetic field on scales less than the injection scale of turbulence and show this divergence induces superdiffusion of CR in the direction perpendicular to the mean magnetic field. The perpendicular displacement squared increases, not as distance along magnetic field, which is the case for a regular diffusion, but as the for freely streaming CRs. The dependence changes to for the CRs propagating diffusively along magnetic field. In the latter case we show that it is important to distinguish the perpendicular displacement in respect to the mean field and to the local magnetic field. We consider how superdiffusion changes the acceleration of CRs in shocks and show how it decreases efficiency of the CRs acceleration in perpendicular shocks. We also demonstrate that in the case when small-scale magnetic field is being generated in the pre-shock region, an efficient acceleration can take place for the CRs streaming without collisions along magnetic loops.
18 pages, 6 figures, erratum in eqs.(12,13) and table 1 included, ApJ accepted
References in corpus (9)
- Theory of Star Formation
- Numerical Tests of Fast Reconnection in Weakly Stochastic Magnetic Fields
- Cosmic Ray Propagation: Nonlinear Diffusion Parallel and Perpendicular to Mean Magnetic Field
- A model of acceleration of Anomalous Cosmic Rays by Reconnection in the Heliosheath
- Cosmic Ray Parallel and Perpendicular Transport in Turbulent Magnetic Fields
- Cosmic Ray Scattering in Compressible Turbulence
- Particle acceleration mechanisms
- Cosmic Ray transport through gyroresonance instability in compressible turbulence
- Dynamics of Mesoscale Magnetic Field in Diffusive Shock Acceleration
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