English

Wave dispersion in pulsar plasma: 1. Plasma rest frame

Plasma Physics 2019-07-31 v2 High Energy Astrophysical Phenomena

Abstract

Wave dispersion in a pulsar plasma (a 1D, strongly magnetized, pair plasma streaming highly relativistically with a large spread in Lorentz factors in its rest frame) is discussed, motivated by interest in beam-driven wave turbulence and the pulsar radio emission mechanism. In the rest frame of the pulsar plasma there are three wave modes in the low-frequency, non-gyrotropic approximation. For parallel propagation these are referred to as the X, A and L modes, with the X and A modes having dispersion relation z=zA11/2βA2z=z_A\approx1-1/2\beta_A^2, where z=ω/kcz=\omega/k_\parallel c is the phase speed and βAc\beta_Ac is the Alfven speed. The L mode dispersion relation is determined by a relativistic plasma dispersion function, z2W(z)z^2W(z), which is negative for z<z0 z < z_0 and has a sharp maximum at z=zmz=z_m, with 1zm<1z011-z_m<1-z_0\ll1. We give numerical estimates for the maximum of z2W(z)z^2W(z) and for zmz_m and z0z_0 for a 1D Juttner distribution. The L and A modes reconnect, for zA>z0z_A>z_0, to form the O and Alfven modes for oblique propagation (θ0\theta\neq0). For zA<z0z_A<z_0 the Alfven and O~mode curves reconnect forming a new mode that exists only for tan2θ>z02zA2\tan^2\theta>z_0^2-z_A^2. The L mode is the nearest counterpart to Langmuir waves in a nonrelativistic plasma, but we argue that there are no `Langmuir-like' waves in pulsar plasma, identifying three features of the L~mode (dispersion relation, ratio of electric to total energy and group speed) that are not Langmuir-like. A beam-driven instability requires a beam speed equal to the phase speed of the wave. This resonance condition can be satisfied for the O mode, but only for an implausibly energetic beam and only for a tiny range of angles for the O~mode around θ0\theta\approx0. The resonance is also possible for the Alfven mode but only near a turnover frequency that has no counterpart for Alfven waves in a nonrelativistic plasma.

Keywords

Cite

@article{arxiv.1812.07121,
  title  = {Wave dispersion in pulsar plasma: 1. Plasma rest frame},
  author = {M. Z. Rafat and D. B. Melrose and A. Mastrano},
  journal= {arXiv preprint arXiv:1812.07121},
  year   = {2019}
}

Comments

Accepted for publication in the Journal of Plasma Physics

R2 v1 2026-06-23T06:45:27.069Z