English

Spectra of magnetic turbulence in a relativistic plasma

Plasma Physics 2023-06-06 v3 High Energy Astrophysical Phenomena

Abstract

We present a phenomenological and numerical study of strong Alfv\'enic turbulence in a magnetically dominated collisionless relativistic plasma with a strong background magnetic field. In contrast with the non-relativistic case, the energy in such turbulence is contained in magnetic and electric fluctuations. We argue that such turbulence is analogous to turbulence in a strongly magnetized non-relativistic plasma in the regime of broken quasi-neutrality. Our 2D particle-in-cell numerical simulations of turbulence in a relativistic pair plasma find that the spectrum of the total energy has the scaling k3/2k^{-3/2}, while the difference between the magnetic and electric energies, the so-called residual energy, has the scaling k2.4k^{-2.4}. The electric and magnetic fluctuations at scale \ell exhibit dynamic alignment with the alignment-angle scaling close to cosϕ1/4\cos\phi_\ell\propto \ell^{1/4}. At scales smaller than the (relativistic) plasma inertial scale, the energy spectrum of relativistic inertial Alfv\'en turbulence steepens to k3.5k^{-3.5}.

Keywords

Cite

@article{arxiv.2204.04530,
  title  = {Spectra of magnetic turbulence in a relativistic plasma},
  author = {Cristian Vega and Stanislav Boldyrev and Vadim Roytershteyn},
  journal= {arXiv preprint arXiv:2204.04530},
  year   = {2023}
}

Comments

8 pages, 3 figures. Published in ApJL. Changes relative to last version: some typos were corrected