4.6 Article

Alfven-wave transmission and test-particle acceleration in parallel relativistic shocks

Journal

ASTRONOMY & ASTROPHYSICS
Volume 409, Issue 3, Pages 821-829

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361:20034038

Keywords

acceleration of particles; ISM : cosmic rays; galaxies : jets; relativity; shock waves; waves

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Alfven-wave transmission through super-Alfvenic parallel relativistic shock waves is studied. We calculate the wave transmission coefficients for given shock properties. We show (i) that the Alfven waves downstream the shock wave are propagating predominantly anti-parallel to the flow direction for low-Mach-number shocks, as in the case of non-relativistic shocks; and (ii) that for high-Mach-number ultra-relativistic shocks the forward and backward downstream waves are in equipartition. For low Alfvenic Mach numbers, the scattering center compression ratio of the shock, thus, becomes large and the spectral index of accelerated test particles approaches the limit sigma --> 1 at shock waves approaching the critical value of the quasi-Newtonian Alfvenic Mach number (i.e., the ratio of upstream fluid and Alfven proper speeds), which depends on the shock properties, and equals the square root of the compression ratio at the test-wave limit. Although the inclusion of the wave electromagnetic and velocity fields to the shock jump conditions is likely to decrease the scattering-center compression ratio for shocks with critical Mach numbers, values significantly above the gas compression ratio can be expected for such shocks. Particle acceleration in weak relativistic shocks propagating in magnetized astrophysical jets may, therefore, be substantially more efficient than predicted by models neglecting turbulent electric fields.

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