Magnetic fields & rotation periods of M dwarfs from SPIRou spectra
J.-F. Donati, L.T. Lehmann, P.I. Cristofari, P. Fouqu\'e, C. Moutou,, P. Charpentier, M. Ould-Elhkim, A. Carmona, X. Delfosse, E. Artigau, S.H.P., Alencar, C. Cadieux, L. Arnold, P. Petit, J. Morin, T. Forveille, R., Cloutier, R. Doyon, G. H\'ebrard, and the SLS collaboration

TL;DR
This study uses near-infrared spectropolarimetry to measure magnetic fields and rotation periods of 43 M dwarfs, revealing diverse magnetic behaviors and long-term evolution patterns.
Contribution
It provides the first large-scale analysis of magnetic fields and rotation periods of M dwarfs using SPIRou spectra, highlighting different dynamo regimes.
Findings
Detected magnetic fields in 40 stars
Rotation periods range from 14 to over 200 days
Magnetic fields evolve over long timescales
Abstract
We present near-infrared spectropolarimetric observations of a sample of 43 weakly- to moderately-active M dwarfs, carried with SPIRou at the Canada-France-Hawaii Telescope in the framework of the SPIRou Legacy Survey from early 2019 to mid 2022. We use the 6700 circularly polarised spectra collected for this sample to investigate the longitudinal magnetic field and its temporal variations for all sample stars, from which we diagnose, through quasi-periodic Gaussian process regression, the periodic modulation and longer-term fluctuations of the longitudinal field. We detect the large-scale field for 40 of our 43 sample stars, and infer a reliable or tentative rotation period for 38 of them, using a Bayesian framework to diagnose the confidence level at which each rotation period is detected. We find rotation periods ranging from 14 to over 60d for the early-M dwarfs, and from 70 to 200d…
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