It has been proposed that the million-degree temperature of the corona is due to the combined effect of barely detectable energy releases, called nanoflares, that occur throughout the solar atmosphere. Unfortunately, the nanoflare density and brightness implied by this hypothesis means that conclusive verification is beyond present observational abilities. Nevertheless, we investigate the plausibility of the nanoflare hypothesis by constructing a magnetohydrodynamic (MHD) model that can derive the energy of a nanoflare from the nature of an ideal kink instability. The set of energy-releasing instabilities is captured by an instability threshold for linear kink modes. Each point on the threshold is associated with a unique energy release; th...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Solar prominences and flares are believed to be caused by rapid release of magnetic energy stored in...
It has been proposed that the million-degree temperature of the corona is due to the combined effect...
Context. It is thought likely that vast numbers of nanoflares are responsible for the corona having ...
Context. It is thought likely that vast numbers of nanoflares are responsible for the corona having ...
Context. The heating of solar coronal plasma to millions of degrees is likely to be due to the super...
Context. The heating of solar coronal plasma to millions of degrees is likely to be due to the super...
Context. The paper is concerned with heating of the solar corona by nanoflares: a superposition of s...
Context. The paper is concerned with heating of the solar corona by nanoflares: a superposition of s...
Context. The paper is concerned with heating of the solar corona by nanoflares: a superposition of s...
Context. Relaxation theory offers a straightforward method for estimating the energy that is release...
Context. Relaxation theory offers a straightforward method for estimating the energy that ...
Context. Relaxation theory offers a straightforward method for estimating the energy that ...
Context. Heating of the solar corona by nanoflares, which are small transient events in which stored...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Solar prominences and flares are believed to be caused by rapid release of magnetic energy stored in...
It has been proposed that the million-degree temperature of the corona is due to the combined effect...
Context. It is thought likely that vast numbers of nanoflares are responsible for the corona having ...
Context. It is thought likely that vast numbers of nanoflares are responsible for the corona having ...
Context. The heating of solar coronal plasma to millions of degrees is likely to be due to the super...
Context. The heating of solar coronal plasma to millions of degrees is likely to be due to the super...
Context. The paper is concerned with heating of the solar corona by nanoflares: a superposition of s...
Context. The paper is concerned with heating of the solar corona by nanoflares: a superposition of s...
Context. The paper is concerned with heating of the solar corona by nanoflares: a superposition of s...
Context. Relaxation theory offers a straightforward method for estimating the energy that is release...
Context. Relaxation theory offers a straightforward method for estimating the energy that ...
Context. Relaxation theory offers a straightforward method for estimating the energy that ...
Context. Heating of the solar corona by nanoflares, which are small transient events in which stored...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
MHD avalanches involve small, narrowly localized instabilities spreading across neighbouring areas i...
Solar prominences and flares are believed to be caused by rapid release of magnetic energy stored in...