Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published July 1, 2009 | Published
Journal Article Open

Stochastic wobble of accretion discs and jets from turbulent rocket torques

Abstract

Models of accretion discs and their associated outflows often incorporate assumptions of axisymmetry and symmetry across the disc plane. However, for turbulent discs these symmetries only apply to averaged quantities and do not apply locally. The local asymmetries can induce local imbalances in outflow power across the disc mid-plane, which can in turn induce local tilting torques. Here we calculate the effect of the resulting stochastic torques on disc annuli that are a consequence of standard mean field accretion disc models. The torques induce a random walk of the vector perpendicular to the plane of each averaged annulus. This random walk is characterized by a radially dependent diffusion coefficient which we calculate for small angle tilt. We use the coefficient to calculate a radially dependent time-scale for annular tilt and associated jet wobble. The wobble time depends on the square of the wander angle so the age of a given system determines the maximum wobble angle. We apply this to examples of blazars, young stellar objects and binary engines of pre-planetary nebulae and microquasars. It is noteworthy that for an averaging time t_w ∼ 3d , we estimate a wobble angle for jets in SS 433 of θ∼ 0.8° , not inconsistent with observational data. In general the non-periodic nature of the stochastic wobble could distinguish it from faster periodic jet precession.

Additional Information

© 2009 The Authors. Journal compilation © 2009 RAS. Accepted 2009 April 3. Received 2009 April 3; in original form 2008 June 8. EGB acknowledges support from NSF grant AST-0406799, NASA grant ATP04-0000-0016 and NORDITA during the Turbulence and Dynamos Workshop 2008.

Attached Files

Published - Pettibone2009p4765Mon_Not_R_Astron_Soc.pdf

Files

Pettibone2009p4765Mon_Not_R_Astron_Soc.pdf
Files (507.0 kB)
Name Size Download all
md5:b22a7c546189a07b2f4f3825951b6ca2
507.0 kB Preview Download

Additional details

Created:
August 20, 2023
Modified:
October 19, 2023