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Microphysics of cosmic ray driven plasma instabilities

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arxiv 1304.7081 v1 pith:JUOPMC2N submitted 2013-04-26 astro-ph.HE

Microphysics of cosmic ray driven plasma instabilities

classification astro-ph.HE
keywords instabilitiescosmicmagneticplasmaamplificationdrivenfieldfields
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Energetic nonthermal particles (cosmic rays, CRs) are accelerated in supernova remnants, relativistic jets and other astrophysical objects. The CR energy density is typically comparable with that of the thermal components and magnetic fields. In this review we discuss mechanisms of magnetic field amplification due to instabilities induced by CRs. We derive CR kinetic and magnetohydrodynamic equations that govern cosmic plasma systems comprising the thermal background plasma, comic rays and fluctuating magnetic fields to study CR-driven instabilities. Both resonant and non-resonant instabilities are reviewed, including the Bell short-wavelength instability, and the firehose instability. Special attention is paid to the longwavelength instabilities driven by the CR current and pressure gradient. The helicity production by the CR current-driven instabilities is discussed in connection with the dynamo mechanisms of cosmic magnetic field amplification.

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