Relativistic Tidal Acceleration of Astrophysical Jets
Abstract
Within the framework of general relativity, we investigate the tidal acceleration of astrophysical jets relative to the central collapsed configuration ("Kerr source"). We neglect electromagnetic forces throughout. The rest frame of the Kerr source is locally defined via the set of hypothetical static observers in the spacetime exterior to the source. Relative to such a fiducial observer fixed on the rotation axis of the Kerr source, jet particles are tidally accelerated to almost the speed of light if their outflow speed is above a certain threshold, given roughly by one half of the Newtonian escape velocity at the location of the reference observer; otherwise, the particles reach a certain height, reverse direction and fall back toward the gravitational source.
Keywords
Cite
@article{arxiv.1703.10843,
title = {Relativistic Tidal Acceleration of Astrophysical Jets},
author = {Donato Bini and Carmen Chicone and Bahram Mashhoon},
journal= {arXiv preprint arXiv:1703.10843},
year = {2020}
}
Comments
26 pages, 6 figures, revtex macros used. Revised version matching the published one. v3: typos corrected in equations (5) and (10)-(12)