English

Relativistic Dynamical Friction in the Weak Scattering Limit

Astrophysics 2015-06-24 v1

Abstract

A test mass, MM, moving through an ambient medium of light particles with lower average kinetic energy than itself suffers a deceleration caused by its scattering of the light particles. The phenomenon is usually referred to as dynamical friction. The velocity, \v, of the test mass decays on a timescale independent of \v in the non-relativistic case. We derive expressions for dynamical friction in the case that the test mass and the light particles are relativistic, and that the scattering is weak (with impact parameter, bMb\gg M). In the case that the light particles are ultra-relativistic, and isotropic in the frame in which MM moves with velocity vv, we find an explicit expression for the dynamical friction. The well known factor of 2 correcting the Newtonian scattering of photons to give the Einstein angle, 4M/b4M/b, has the largest effect on the resulting friction, which is modified by a factor of roughly 16/3γv16 / 3\gamma_v over the simple non-relativistic case. In the non-relativistic case, the largest contribution to the friction comes from light particles moving slower than vv. We find that this is not the case for ultra-relativistic scattering, essentially because the scattering angle is independent of \v. Some astrophysical implications are discussed. (Accepted for publication in Monthly Notices.)

Keywords

Cite

@article{arxiv.astro-ph/9404063,
  title  = {Relativistic Dynamical Friction in the Weak Scattering Limit},
  author = {D. Syer},
  journal= {arXiv preprint arXiv:astro-ph/9404063},
  year   = {2015}
}

Comments

10 pages (no figures), self-unpacking uuencoded PostScript (uufiles), RDF#1

R2 v1 2026-07-22T09:23:46.160Z