Safety first: Stability and dissipation of line-tied force-free flux tubes in magnetized coronae
arXiv:2312.04620 · doi:10.3847/1538-4357/ad3206
Abstract
Magnetized plasma columns and extended magnetic structures with both footpoints anchored to a surface layer are an important building block of astrophysical dissipation models. Current loops shining in X-rays during the growth of plasma instabilities are observed in the corona of the Sun and are expected to exist in highly magnetized neutron star magnetospheres and accretion disk coronae. For varying twist and system sizes, we investigate the stability of line-tied force-free flux tubes and the dissipation of twist energy during instabilities using linear analysis and time-dependent force-free electrodynamics simulations. Kink modes () and efficient magnetic energy dissipation develop for plasma safety factors , where is the inverse of the number of magnetic field line windings per column length. Higher-order fluting modes () can distort equilibrium flux tubes for but induce significantly less dissipation. In our analysis, the characteristic pitch of flux tube field lines determines the growth rate () and minimum wavelength of the kink instability (). We use these scalings to determine a minimum flux tube length for the growth of the kink instability for any given . By drawing analogies to idealized magnetar magnetospheres with varying regimes of boundary shearing rates, we discuss the expected impact of the pitch-dependent growth rates for magnetospheric dissipation in magnetar conditions.
(14 pages, 12 figures, Accepted for publication by ApJ)
References in corpus (20)
- X-ray reverberation around accreting black holes
- Corona of Magnetars
- The role of kink instability in Poynting-flux dominated jets
- Driving extreme variability: The evolving corona and evidence for jet launching in Markarian 335
- Particle acceleration and transport in reconnecting twisted loops in a stratified atmosphere
- Plasmoid ejection by Alfvén waves and the fast radio bursts from SGR 1935+2154
- Electromagnetic precursors to gravitational wave events: Numerical simulations of flaring in pre-merger binary neutron star magnetospheres
- Triggering magnetar outbursts in 3D force-free simulations
- Flares, jets and quasi-periodic outbursts from neutron star merger remnants
- Three-dimensional dynamics of strongly twisted magnetar magnetospheres: Kinking flux tubes and global eruptions
- Weak Alfvénic turbulence in relativistic plasmas II: Current sheets and dissipation
- Multiwavelength observation of a large-scale flux rope eruption above kinked mini-filament
- Legolas: a modern tool for magnetohydrodynamic spectroscopy
- Relativistic coronal mass ejections from magnetars
- Computational General Relativistic Force-Free Electrodynamics: II. Characterization of Numerical Diffusivity
- Direct Emission of Strong Radio Pulses During Magnetar Flares
- Multi-wavelength Observation of a Failed Eruption from a Helical Kink-unstable Prominence
- Modelling 3D Force-Free Neutron Star Magnetospheres
- Analysis of the Helical Kink Stability of Differently Twisted Magnetic Flux Ropes
- Diffusivity in force-free simulations of global magnetospheres