Nonlinear Diffusive Shock Acceleration with Magnetic Field Amplification
arXiv:astro-ph/0606433 · doi:10.1086/508154
Abstract
We introduce a Monte Carlo model of nonlinear diffusive shock acceleration allowing for the generation of large-amplitude magnetic turbulence. The model is the first to include strong wave generation, efficient particle acceleration to relativistic energies in nonrelativistic shocks, and thermal particle injection in an internally self-consistent manner. We find that the upstream magnetic field can be amplified by large factors and show that this amplification depends strongly on the ambient Alfven Mach number. We also show that in the nonlinear model large increases in the magnetic field do not necessarily translate into a large increase in the maximum particle momentum a particular shock can produce, a consequence of high momentum particles diffusing in the shock precursor where the large amplified field converges to the low ambient value. To deal with the field growth rate in the regime of strong fluctuations, we extend to strong turbulence a parameterization that is consistent with the resonant quasi-linear growth rate in the weak turbulence limit. We believe our parameterization spans the maximum and minimum range of the fluctuation growth and, within these limits, we show that the nonlinear shock structure, acceleration efficiency, and thermal particle injection rates depend strongly on the yet to be determined details of wave growth in strongly turbulent fields. The most direct application of our results will be to estimate magnetic fields amplified by strong cosmic-ray modified shocks in supernova remnants.
Accepted in ApJ July 2006, typos corrected in this version
References in corpus (4)
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- Confirmation of strong magnetic field amplification and nuclear cosmic ray acceleration in SN 1006
- Variation of cosmic ray injection across supernova shocks
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- Modeling Bell's Non-resonant Cosmic Ray Instability
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- Non-thermal processes in cosmological simulations
- Evidence for nonlinear diffusive shock acceleration of cosmic-rays in the 2006 outburst of the recurrent nova RS Ophiuchi
- Particle acceleration mechanisms
- Dynamical effects of self-generated magnetic fields in cosmic ray modified shocks
- Turbulence Dissipation and Particle Injection in Non-Linear Diffusive Shock Acceleration with Magnetic Field Amplification
- Cosmological shock waves
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- Equilibration processes in the Warm-Hot Intergalactic Medium
- Cosmic Ray Acceleration by Supernova Shocks
- Magnetic Field Amplification and Rapid Time Variations in SNR RX J1713.7-3946
- 3-D Model of Broadband Emission from Supernova Remnants Undergoing Non-linear Diffusive Shock Acceleration