English

Physics of relativistic collisionless shocks: III The suprathermal particles

High Energy Astrophysical Phenomena 2019-10-02 v2 Plasma Physics

Abstract

In this third paper of a series, we discuss the physics of the population of accelerated particles in the precursor of an unmagnetized, relativistic collisionless pair shock. In particular, we provide a theoretical estimate of their scattering length lscatt(p)l_{scatt}(p) in the self-generated electromagnetic turbulence, as well as an estimate of their distribution function. We obtain lscatt(p)(γp/ϵB)(p/γmc)2(c/ωp)l_{scatt}(p) \simeq (\gamma_p /\epsilon_B)(p/\gamma_{\infty} mc)^2 (c/\omega_p), with p the particle momentum in the rest frame of the shock front, ϵB\epsilon_B the strength parameter of the microturbulence, γp\gamma_p the Lorentz factor of the background plasma relative to the shock front and γ\gamma_{\infty} its asymptotic value outside the precursor. We compare this scattering length to large-scale PIC simulations and find good agreement for the various dependencies.

Keywords

Cite

@article{arxiv.1907.10294,
  title  = {Physics of relativistic collisionless shocks: III The suprathermal particles},
  author = {Martin Lemoine and Guy Pelletier and Arno Vanthieghem and Laurent Gremillet},
  journal= {arXiv preprint arXiv:1907.10294},
  year   = {2019}
}

Comments

Phys. Rev. E, submitted; 13 pages, 5 figures