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Interaction of Ultra Relativistic e- e+ Fireball Beam with Plasma

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arxiv 1306.4380 v2 pith:YK53IMN4 submitted 2013-06-18 physics.plasm-ph astro-ph.HE

classification physics.plasm-phastro-ph.HE
keywords plasmabeaminstabilitydensityfilamentationfireballpropagationrelativistic
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Ab initio simulations of the propagation in a plasma of a soon to be available relativistic electron-positron beam or fireball beam provide an effective mean for the study of microphysics relevant to astrophysical scenarios. We show that the current filamentation instability associated with some of these scenarios reaches saturation after only 10 cm of propagation in a typical laboratory plasma with a density 10^17/cc. The different regimes of the instability, from the purely transverse to the mixed mode filamentation, can be accessed by varying the background plasma density. The instability generates large local plasma gradients, intense transverse magnetic fields, and enhanced emission of radiation. We suggest that these effects may be observed experimentally for the first time.

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  1. Can plasma physics establish a significant bound on long range dark matter interactions?

    hep-ph 2024-11 conditional novelty 5.0 of 10

    Collisionless plasma instabilities would visibly brake dark-matter halos in cluster mergers, so the clean Bullet Cluster passage bounds the dark electromagnetic coupling to α_D < 4×10^-25 (m_D = 1 TeV).

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