Kelvin-Helmholtz instability and heating in oscillating loops perturbed by power-law transverse wave drivers
arXiv:2406.11700 · doi:10.1051/0004-6361/202348972
Abstract
Instabilities in oscillating loops are believed to be essential for dissipating the wave energy and heating the solar coronal plasma. Our aim is to study the development of the Kelvin-Helmholtz (KH) instability in an oscillating loop that is driven by random footpoint motions. Using the PLUTO code, we performed 3D simulations of a straight gravitationally stratified flux tube. The loop footpoints are embedded in chromospheric plasma, in the presence of thermal conduction and an artificially broadened transition region. Using drivers with a power-law spectrum, one with a red noise spectrum and one with the low-frequency part subtracted, we excited standing oscillations and the KH instability in our loops, after one-and-a-half periods of the oscillation. We see that our broadband drivers lead to fully deformed, turbulent loop cross-sections over the entire coronal part of the loop due to the spatially extended KH instability. The low RMS velocity of our driver without the low-frequency components supports the working hypothesis that the KH instability can easily manifest in oscillating coronal loops. We report for the first time in driven transverse oscillations of loops the apparent propagation of density perturbations due to the onset of the KH instability, from the apex towards the footpoints. Both drivers input sufficient energy to drive enthalpy and mass flux fluctuations along the loop, while also causing heating near the driven footpoint of the oscillating loop, which becomes more prominent when a low-frequency component is included in the velocity driver. Finally, our power-law driver with the low-frequency component provides a RMS input Poynting flux of the same order as the radiative losses of the quiet-Sun corona, giving us promising prospects for the contribution of decayless oscillations in coronal heating.
12 pages, 12 figures
References in corpus (31)
- PLUTO: a Numerical Code for Computational Astrophysics
- Coronal heating by MHD waves
- 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
- Kink oscillations of coronal loops
- The importance of magnetic-field-oriented thermal conduction in the interaction of SNR shocks with interstellar clouds
- Heating by transverse waves in simulated coronal loops
- Dynamics of the solar magnetic bright points derived from their horizontal motions
- 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
- Excitation of decay-less transverse oscillations of coronal loops by random motions
- Decayless oscillations in solar coronal bright points
- Amplitudes and energy fluxes of simulated decayless kink oscillations
- The First 3D Coronal Loop Model Heated by MHD Waves against Radiative Losses
- Wave heating in gravitationally stratified coronal loops in the presence of resistivity and viscosity
- A Fast and Accurate Method to Capture the Solar Corona/Transition Region Enthalpy Exchange
- Generating transverse loop oscillations through a steady-flow driver
- High frequency decayless waves with significant energy in Solar Orbiter/EUI observations
- Two-Spacecraft Detection of Short-period Decayless Kink Oscillations of Solar Coronal Loops
- Contribution of observed multi frequency spectrum of Alfvén waves to coronal heating
- Transverse loop oscillations via vortex shedding: a self oscillating process
- Coronal loop transverse oscillations excited by different driver frequencies
- Estimating the energy dissipation {from Kelvin-Helmholtz instability induced} turbulence in oscillating coronal loops}
- Wave pressure and energy cascade rate of kink waves computed with Elsasser variables
- A Statistical Investigation of Decayless Oscillations in Small-scale Coronal Loops Observed by Solar Orbiter/EUI
- Transition to turbulence in nonuniform coronal loops driven by torsional Alfven waves
- Cut-off of transverse waves through the solar transition region
- Influence of the Lower Atmosphere on Wave Heating and Evaporation in Solar Coronal Loops
- The effects of driving time scales on coronal heating in a stratified atmosphere
- Decayless oscillations in 3D coronal loops excited by a power-law driver
- Transition to turbulence in nonuniform coronal loops driven by torsional Alfvén waves. II. Extended analysis and effect of magnetic twist
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- Spectra of standing kink waves in loops and the effects of the lower solar atmosphere