Repository logo
  • English
  • Italiano
Log In
Have you forgotten your password?
  1. Home
  2. PRODOTTI RICERCA INAF
  3. 1 CONTRIBUTI IN RIVISTE (Journal articles)
  4. 1.01 Articoli in rivista
  5. Global simulations of Tayler instability in stellar interiors: the stabilizing effect of gravity
 

Global simulations of Tayler instability in stellar interiors: the stabilizing effect of gravity

Journal
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY  
Date Issued
2019
Author(s)
Guerrero, G.
•
Del Sordo, F.
•
BONANNO, Alfio Maurizio  
•
Smolarkiewicz, P. K.
DOI
10.1093/mnras/stz2849
Abstract
Unveiling the evolution of toroidal field instability, known as Tayler instability, is essential to understand the strength and topology of the magnetic fields observed in early-type stars, in the core of the red giants, or in any stellar radiative zone. We want to study the non-linear evolution of the instability of a toroidal field stored in a stably stratified layer, in spherical symmetry and in the absence of rotation. In particular, we intend to quantify the suppression of the instability as a function of the Brunt-Väisäla (ωBV) and the Alfvén (ωA) frequencies. We use the magnetohydrodynamic (MHD) equations as implemented in the anelastic approximation in the EULAG-MHD code and perform a large series of numerical simulations of the instability exploring the parameter space for the ωBV and ωA. We show that beyond a critical value gravity strongly suppress the instability, in agreement with the linear analysis. The intensity of the initial field also plays an important role: weaker fields show much slower growth rates. Moreover, in the case of very low gravity, the fastest growing modes have a large characteristic radial scale, at variance with the case of strong gravity, where the instability is characterized by horizontal displacements. Our results illustrate that the anelastic approximation can efficiently describe the evolution of toroidal field instability in stellar interiors. The suppression of the instability as a consequence of increasing values of ωBV might play a role to explain the magnetic desert in Ap/Bp stars, since weak fields are only marginally unstable in the case of strong gravity.
Volume
490
Issue
3
Start page
4281
Uri
http://hdl.handle.net/20.500.12386/29801
Url
https://academic.oup.com/mnras/article-abstract/490/3/4281/5586574
Issn Identifier
0035-8711
Ads BibCode
2019MNRAS.490.4281G
Rights
open.access
File(s)
Loading...
Thumbnail Image
Name

gue.pdf

Description
PDF editoriale
Size

3.64 MB

Format

Adobe PDF

Checksum (MD5)

bcbe7689862ffe3f54c37c94249babca

Explore By
  • Communities and Collection
  • Research Outputs
  • Researchers
  • Organizations
  • Projects
Information and guides for authors
  • https://openaccess-info.inaf.it: all about open access in INAF
  • How to enter a product: guides to OA@INAF
  • The INAF Policy on Open Access
  • Downloadable documents and templates

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Privacy policy
  • End User Agreement
  • Send Feedback