The Great Flare of 2021 November 19 on AD Leo. Simultaneous XMM-Newton and TESS observations
B. Stelzer, M. Caramazza, St. Raetz, C. Argiroffi, M. Coffaro, (Universit\"at T\"ubingen, INAF - Osservatorio Astronomico di Palermo,, Universit\`a di Palermo)

TL;DR
This study analyzes a rare simultaneous X-ray and optical superflare on AD Leo, revealing detailed plasma dynamics, energy estimates, and flare morphology, closely following solar flare models.
Contribution
It provides the first detailed multi-wavelength analysis of a superflare on AD Leo, including plasma diagnostics and comparison with solar flare phenomena.
Findings
Flare radiated energy in X-ray and bolometric bands measured.
Detected a time lag and Neupert effect consistent with solar flare models.
Estimated flare loop size and plasma parameters from spectroscopy.
Abstract
We present a detailed analysis of a superflare on the active M dwarf star AD Leonis. The event presents a rare case of a stellar flare observed simultaneously in X-rays (with XMM-Newton) and in optical (with the Transiting Exoplanet Survey Satellite, TESS). The radiated energy both in the 0.2-12 keV X-ray band ( erg) and the bolometric value ( erg) put this event at the lower end of the superflare class. The exceptional photon statistics deriving from the proximity of AD Leo has enabled measurements in the 1-8 AA GOES band for the peak flux (X1445 class) and integrated energy ( erg), making possible a direct comparison with data on flares from our Sun. From extrapolations of empirical relations for solar flares we estimate that a proton flux of at least $10^5\,{cm^{-2} s^{-1}…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Solar and Space Plasma Dynamics · Astro and Planetary Science
