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The benchmark M dwarf eclipsing binary CM Draconis with <i>TESS</i>: spots, flares, and ultra-precise parameters

David V. Martin, Ritika Sethi, Tayt Armitage, Gregory J. Gilbert, Romy Rodríguez Martínez, Emily A. Gilbert

2024Monthly Notices of the Royal Astronomical Society14 citationsDOIOpen Access PDF

Abstract

ABSTRACT A gold standard for the study of M dwarfs is the eclipsing binary CM Draconis. It is rare because it is bright (Jmag = 8.5) and contains twin fully convective stars on an almost perfectly edge-on orbit. Both masses and radii were previously measured to better than 1 per cent precision, amongst the best known. We use 15 sectors of data from the Transiting Exoplanet Survey Satellite (TESS) to show that CM Draconis is the gift that keeps on giving. Our paper has three main components. First, we present updated parameters, with radii and masses constrained to previously unheard-of precisions of ≈0.06 and ≈0.12 per cent, respectively. Secondly, we discover strong and variable spot modulation, suggestive of spot clustering and an activity cycle of the order of ≈4 yr. Thirdly, we discover 163 flares. We find a relationship between the spot modulation and flare rate, with flares more likely to occur when the stars appear brighter. This may be due to a positive correlation between flares and the occurrence of bright spots (plages). The flare rate is surprisingly not reduced during eclipse, but one flare may show evidence of being occulted. We suggest that the flares may be preferentially polar, which has positive implications for the habitability of planets orbiting M dwarfs.

Topics & Concepts

PhysicsAstrophysicsStarspotFlareStarsLight curveEclipseAstronomyPlanetVariable starCataclysmic variable starBinary starFlare starWhite dwarfK-type main-sequence starT Tauri starStellar, planetary, and galactic studiesAstronomy and Astrophysical ResearchAstro and Planetary Science
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