Nonaxisymmetric Poynting Jets
Abstract
The relativistic plasma jets from a misaligned black hole-accretion disk system will not be axially symmetric. Here we analyze nonaxisymmetric, stationary, translation invariant jets in the force-free approximation where the field energy dominates the particle energy. We derive a stream equation for these configurations involving the flux function for the transverse magnetic field, the linear velocity of field lines along the jet, and the longitudinal magnetic field . The equations can be completely solved when , and when the problem can be reduced to the pure magnetic case by a "field line dependent boost". We also find a large class of nonaxisymmetric solutions with arbitrary dependence on the longitudinal retarded time. A subclass of these constitutes a novel type of jet that has vanishing electromagnetic pressure and requires no external pressure for confinement. We prove that such self-confinement is impossible when . Finally, we write down specific solutions approximating numerical results for the nonaxisymmetric jet produced by a spinning black hole in an external, misaligned magnetic field.
Cite
@article{arxiv.1503.03848,
title = {Nonaxisymmetric Poynting Jets},
author = {Samuel E. Gralla and Ted Jacobson},
journal= {arXiv preprint arXiv:1503.03848},
year = {2015}
}
Comments
11 pages; v2: minor editing to improve the presentation