Abstract
We analyze a confined flare that developed a hot cusp-like structure high in the corona ( H ∼ 66 Mm). A growing cusp-shaped flare arcade is a typical feature in the standard model of eruptive flares, caused by magnetic reconnection at progressively larger coronal heights. In contrast, we observe a static hot cusp during a confined flare. Despite an initial vertical temperature distribution similar to that in eruptive flares, we observe a distinctly different evolution during the late (decay) phase, in the form of prolonged hot emission. The distinct cusp shape, rooted at locations of nonthermal precursor activity, was likely caused by a magnetic field arcade that kinked near the top. Our observations indicate that the prolonged heating was a result of slow local reconnection and an increased thermal pressure near the kinked apexes due to continuous plasma upflows.
Cite
CITATION STYLE
Hernandez-Perez, A., Su, Y., Thalmann, J., Veronig, A. M., Dickson, E. C., Dissauer, K., … Chandra, R. (2019). A Hot Cusp-shaped Confined Solar Flare. The Astrophysical Journal Letters, 887(2), L28. https://doi.org/10.3847/2041-8213/ab5ba1
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.