26 August 2024 to 20 September 2024
Albano Building 3
Europe/Stockholm timezone

Igor Rogachevskii: Convection and magnetic fields of low-mass main sequences stars: Non-linear dynamo theory and mean-field numerical simulations

30 Aug 2024, 11:10
25m
Albano Building 3

Albano Building 3

Hannes Alfvéns väg 12, 10691 Stockholm, Sweden

Description

Our theoretical and numerical analysis of convection and magnetic fields for low-mass main sequences stars (of the spectral classes from M5 to G0) rotating much faster than the Sun, have suggested that the generated large-scale magnetic field is caused by the mean-field $\alpha^2\Omega$ dynamo, whereby the $\alpha^2$ dynamo is modified by a weak differential rotation. Even for a weak differential rotation, the behaviour of the magnetic activity is changed drastically from aperiodic regime to non-linear oscillations and appearance of a chaotic behaviour with increase of the differential rotation. Periods of the magnetic cycles decrease with increase of the differential rotation, and they vary from tens to thousand years. This long-term behaviour of the magnetic cycles may be related to the characteristic time of the evolution of the magnetic helicity density of the small-scale field. The performed analysis is based on the mean-field simulations (MFS) of the $\alpha^2\Omega$ and $\alpha^2$ dynamos and a developed non-linear theory of convection and dynamos.

Presentation materials