English

Wave dispersion in pulsar plasma: 2. Pulsar frame

Plasma Physics 2019-07-17 v2 High Energy Astrophysical Phenomena

Abstract

Wave dispersion in a pulsar plasma is discussed emphasizing the relevance of different inertial frames, notably the plasma rest frame K{\cal K} and the pulsar frame K{\cal K}' in which the plasma is streaming with speed βs\beta_{\rm s}. The effect of a Lorentz transformation on both subluminal, z<1|z|<1, and superluminal, z>1|z|>1, waves is discussed. It is argued that the preferred choice for a relativistically streaming distribution should be a Lorentz-transformed J\"uttner distribution; such a distribution is compared with other choices including a relativistically streaming Gaussian distribution. A Lorentz transformation of the dielectric tensor is written down, and used to derive an explicit relation between the relativistic plasma dispersion functions in K{\cal K} and K{\cal K}'. It is shown that the dispersion equation can be written in an invariant form, implying a one-to-one correspondence between wave modes in any two inertial frames. Although there are only three modes in the plasma rest frame, it is possible for backward-propagating or negative-frequency solutions in K{\cal K} to transform into additional forward-propagating, positive-frequency solutions in K{\cal K}' that may be regarded as additional modes.

Keywords

Cite

@article{arxiv.1812.07120,
  title  = {Wave dispersion in pulsar plasma: 2. Pulsar frame},
  author = {M. Z. Rafat and D. B. Melrose and A. Mastrano},
  journal= {arXiv preprint arXiv:1812.07120},
  year   = {2019}
}

Comments

Accepted for publication in Journal of Plasma Physics

R2 v1 2026-06-23T06:45:26.888Z