Context. A possible key element for large-scale energy release in the solar corona is a magnetohydrodynamic (MHD) kink instability in a single twisted magnetic flux tube. An initial helical current sheet progressively fragments in a turbulent way into smaller-scale sheets. Dissipation of these sheets is similar to a nanoflare storm. Since the loop expands in the radial direction during the relaxation process, an unstable loop can disrupt nearby stable loops and trigger an MHD avalanche.Aims. Exploratory investigations have been conducted in previous works with relatively simplified loop configurations. In this work, we address a more realistic environment that comprehensively accounts for most of the physical effects involved in a stratifie...
Funding: This work benefits from the support of the Science and Technology Facilities Council throug...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
Context. A possible key element for large-scale energy release in the solar corona is a magnetohydro...
Context. A possible key element for large-scale energy release in the solar corona is a magnetohydro...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Funding: This work benefits from the support of the Science and Technology Facilities Council throug...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
Context. A possible key element for large-scale energy release in the solar corona is a magnetohydro...
Context. A possible key element for large-scale energy release in the solar corona is a magnetohydro...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed thr...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Funding: This work benefits from the support of the Science and Technology Facilities Council throug...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...