Skip to main navigation Skip to search Skip to main content

Global MHD instabilities of the tachocline

  • National Center for Atmospheric Research
  • Monash University

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

16 Scopus citations

Abstract

The combination of differential rotation and toroidal fields believed to exist in the solar tachocline should be unstable to global MHD modes, typically dominated by longitudinal wavenumber m = 1 modes for toroidal fields of peak value 30 kG and higher, and a broader range of low m values for weaker fields. For toroidal field bands, the high field instability takes the form of a 'tipping' of the band away from coincidence with circles of latitude. For a wide range of toroidal fields and differential rotations, and in both the overshoot and radiative parts of the tachocline, the unstable modes grow in a time short compared to a solar cycle, and are therefore of interest for the solar dynamo problem, as well as for creation of longitude-dependent magnetic patterns seen at the solar surface. The latitudinal momentum transport by Reynolds and Maxwell stresses associated with unstable modes provides a way to mix angular momentum in latitude, and help limit the thickness of the tachocline. Introduction The study of global MHD instabilities of differential rotation and toroidal fields that might be present in the solar tachocline began with Gilman & Fox (1997). Their original motivation was to see whether the magnetic field could destabilize the differential rotation of the tachocline, estimated to be stable to hydrodynamical disturbances by itself.

Original languageEnglish
Title of host publicationThe Solar Tachocline
PublisherCambridge University Press
Pages243-274
Number of pages32
Volume9780521861014
ISBN (Electronic)9780511536243
ISBN (Print)0521861012, 9780521861014
DOIs
StatePublished - Jan 1 2007
Externally publishedYes

Fingerprint

Dive into the research topics of 'Global MHD instabilities of the tachocline'. Together they form a unique fingerprint.

Cite this