A long-duration superflare on the K giant HD 251108
Abstract
Many giant stars are magnetically active, which causes rotational variability, chromospheric emission lines, and X-ray emission. Large outbursts in these emission features can set limits on the magnetic field strength and thus constrain the mechanism of the underlying dynamo. HD~251108 is a Li-rich active K-type giant. We find a rotational period of 21.3~d with color changes and additional long-term photometric variability. Both can be explained with very stable stellar spots. We followed the decay phase of a superflare for 28 days with NICER and from the ground. We track the flare decay in unprecedented detail in several coronal temperature components. With a peak flux around ~erg~s (0.5-4.0~keV) and an exponential decay time of 2.2~days in the early decay phase, this is one of the strongest flares ever observed; yet it follows trends established from samples of smaller flares, for example for the relations between H and X-ray flux, indicating that the physical process that powers the flare emission is consistent over a large range of flare energies. We estimate a flare loop length about 2-4 times the stellar radius. No evidence is seen for abundance changes during the flare.
Keywords
Cite
@article{arxiv.2410.03616,
title = {A long-duration superflare on the K giant HD 251108},
author = {Hans Moritz Günther and Dheeraj Pasham and Alexander Binks and Stefan Czesla and Teruaki Enoto and Michael Fausnaugh and Franz-Josef Hambsch and Shun Inoue and Hiroyuki Maehara and Yuta Notsu and Jan Robrade and J. H. M. M. Schmitt and P. C. Schneider},
journal= {arXiv preprint arXiv:2410.03616},
year = {2024}
}
Comments
submitted to ApJ, one electronic figures and data will be available with the journal publication. The version on arXiv contains a static image of that figure