Previous work has confirmed the concept of a magnetohydrodynamic (MHD) avalanche in pre-stressed threads within a coronal loop. We undertook a series of full, three-dimensional MHD simulations in order to create three threads by twisting the magnetic field through boundary motions until an instability ensues. We find that, following the original instability, one unstable thread can disrupt its neighbours with continued driving. A ‘bursty’ heating profile results, with a series of ongoing energy releases, but no evident steady state. For the first time using full MHD, we show that avalanches are a viable mechanism for the storing and release of magnetic energy in the solar corona, as a result of photospheric motions
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
The coronal heating problem addresses how temperatures in the solar atmosphere increase by millions ...
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...
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...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
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...
Context. A possible key element for large-scale energy release in the solar corona is a magnetohydro...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
For the first time, we demonstrate how an MHD avalanche might occur in a multithreaded coronal loop....
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
The coronal heating problem addresses how temperatures in the solar atmosphere increase by millions ...
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...
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...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
Funding: Carnegie Trust for the Universities of Scotland; Science and Technology Facilities Council ...
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...
Context. A possible key element for large-scale energy release in the solar corona is a magnetohydro...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
For the first time, we demonstrate how an MHD avalanche might occur in a multithreaded coronal loop....
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
The plasma heating associated with an avalanche involving three twisted magnetic threads within a co...
The coronal heating problem addresses how temperatures in the solar atmosphere increase by millions ...