The magnetic field and multiple planets of the young dwarf AU~Mic
J.-F. Donati, P.I. Cristofari, B. Finociety, B. Klein, C. Moutou, E., Gaidos, C. Cadieux, E. Artigau, A.C.M. Correia, G. Bou\'e, N.J. Cook, A., Carmona, L.T. Lehmann, J. Bouvier, E. Martioli, J. Morin, P. Fouqu\'e, X., Delfosse, R. Royon, G. H\'ebrard, S.H.P. Alencar, J. Laskar

TL;DR
This study analyzes the magnetic field structure and planetary system of the young dwarf star AU Mic using spectropolarimetric and velocimetric data, revealing its magnetic properties and detecting multiple planets, including a new candidate.
Contribution
First detailed magnetic field mapping of AU Mic combined with detection of a new exoplanet candidate through RV analysis.
Findings
Large-scale magnetic field is mostly poloidal and axisymmetric.
Detected RV signatures of planets b, c, and a new candidate e.
Surface differential rotation is about 30% weaker than the Sun.
Abstract
In this paper we present an analysis of near-infrared spectropolarimetric and velocimetric data of the young M dwarf AU Mic, collected with SPIRou at the Canada-France-Hawaii telescope from 2019 to 2022, mostly within the SPIRou Legacy Survey. With these data, we study the large- and small-scale magnetic field of AU Mic, detected through the unpolarized and circularly-polarized Zeeman signatures of spectral lines. We find that both are modulated with the stellar rotation period (4.86 d), and evolve on a timescale of months under differential rotation and intrinsic variability. The small-scale field, estimated from the broadening of spectral lines, reaches kG. The large-scale field, inferred with Zeeman-Doppler imaging from Least-Squares Deconvolved profiles of circularly-polarized and unpolarized spectral lines, is mostly poloidal and axisymmetric, with an average…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astro and Planetary Science · Astronomy and Astrophysical Research
