Critical decay index for eruptions of 'short' filaments
arXiv:2103.07231 · doi:10.1093/mnras/stab756
Abstract
Model of a partial current-carrying torus loop anchored to the photosphere is analyzed. Conditions of the catastrophic loss of equilibrium are considered and corresponding value of the critical decay index of external magnetic field is found. Taking into account line-tying conditions leads to non-monotonous dependence of the critical decay index on the height of the apex and length of the flux rope (its endpoints separation). For relatively short flux ropes, the critical decay index is significantly lower than unity, which is in contrast to widespread models with the typical critical decay index above unity. The steep decrease of the critical index with height at low heights is due to the sharp increase of the curvature of the flux-rope axis that transforms from a nearly straight line to a crescent.
11 pages, 4 figures. Accepted for publication in MNRAS
References in corpus (7)
- Torus instability
- Numerical simulations of fast and slow coronal mass ejections
- Prominence and Filament Eruptions Observed by the Solar Dynamics Observatory: Statistical Properties, Kinematics, and Online Catalog
- Magnetic Structure and Dynamics of the Erupting Solar Polar Crown Prominence on 2012 March 12
- Magnetohydrodynamic Simulation of the X2.2 Solar Flare on 2011 February 15: II. Dynamics Connecting the Solar Flare and the Coronal Mass Ejection
- Finding the critical decay index in solar prominence eruptions
- Solar Eruption and Local Magnetic Parameters