Fine strand-like structure in the solar corona from MHD transverse oscillations
arXiv:1405.0076 · doi:10.1088/2041-8205/787/2/L22
Abstract
Current analytical and numerical modelling suggest the existence of ubiquitous thin current sheets in the corona that could explain the observed heating requirements. On the other hand, new high resolution observations of the corona indicate that its magnetic field may tend to organise itself in fine strand-like structures of few hundred kilometres widths. The link between small structure in models and the observed widths of strand-like structure several orders of magnitude larger is still not clear. A popular theoretical scenario is the nanoflare model, in which each strand is the product of an ensemble of heating events. Here, we suggest an alternative mechanism for strand generation. Through forward modelling of 3D MHD simulations we show that small amplitude transverse MHD waves can lead in a few periods time to strand-like structure in loops in EUV intensity images. Our model is based on previous numerical work showing that transverse MHD oscillations can lead to Kelvin-Helmholtz instabilities that deform the cross-sectional area of loops. While previous work has focused on large amplitude oscillations, here we show that the instability can occur even for low wave amplitudes for long and thin loops, matching those presently observed in the corona. We show that the vortices generated from the instability are velocity sheared regions with enhanced emissivity hosting current sheets. Strands result as a complex combination of the vortices and the line-of-sight angle, last for timescales of a period and can be observed for spatial resolutions of a tenth of loop radius.
Accepted for publication in ApJL
References in corpus (4)
- Alfven Waves in the Lower Solar Atmosphere
- Persistent Doppler shift oscillations observed with HINODE/EIS in the solar corona: spectroscopic signatures of Alfvenic waves and recurring upflows
- Nonlinear Instability of kink oscillations due to shear motions
- Evolution of fast magnetoacoustic pulses in randomly structured coronal plasmas
Cited by in corpus (14)
- Three-dimensional Magnetohydrodynamic Simulation of the Formation of Solar Chromospheric Jets with Twisted Magnetic Field Lines
- Heating by transverse waves in simulated coronal loops
- Damping of nonlinear standing kink oscillations: a numerical study
- Modelling observed decay-less oscillations as resonantly enhanced Kelvin-Helmholtz vortices from transverse MHD waves and their seismological application
- Kelvin-Helmholtz instability in solar chromospheric jets: theory and observation
- 3D MHD modeling of twisted coronal loops
- Forward Modelling of Standing Slow Modes in Flaring Coronal Loops
- Energetics of the Kelvin-Helmholtz instability induced by transverse waves in twisted coronal loops
- Amplitudes and energy fluxes of simulated decayless kink oscillations
- On the multi-threaded nature of solar spicules
- Coronal loop transverse oscillations excited by different driver frequencies
- Field topologies in ideal and near ideal magnetohydrodynamics and vortex dynamics
- Derivations and Observations of Prominence Bulk Motions and Mass
- New analytical and numerical models of solar coronal loop: I. Application to forced vertical kink oscillations