Constraining atmospheric parameters and surface magnetic fields with ZeeTurbo: an application to SPIRou spectra

Author:

Cristofari P I1ORCID,Donati J-F1ORCID,Folsom C P23,Masseron T4,Fouqué P15,Moutou C1,Artigau E6,Carmona A7,Petit P1,Delfosse X7,Martioli E89,

Affiliation:

1. Université de Toulouse, CNRS, IRAP , 14 avenue Belin, 31400 Toulouse , France

2. Tartu Observatory, University of Tartu , Observatooriumi 1, Tõravere, 61602 Tartumaa , Estonia

3. Department of Physics & Astronomy, University of Western Ontario , London, ON N6A 3K7 , Canada

4. Departamento de Astrofísica, Universidad de La Laguna , E-38206 La Laguna, Tenerife , Spain

5. Canada–France–Hawaii Telescope, CNRS , Kamuela, HI 96743 , USA

6. Département de Physique, Université de Montréal, IREX , Montréal, QC H3C 3J7 , Canada

7. Université Grenoble Alpes, CNRS, IPAG , 38000 Grenoble , France

8. Institut d’Astrophysique de Paris, CNRS, UMR 7095, Sorbonne Université , F-75014 Paris , France

9. Laboratório National de Astrofíısica , Itajubá, MG 37504-364 , Brazil

Abstract

ABSTRACT We report first results on a method aimed at simultaneously characterizing atmospheric parameters and magnetic properties of M dwarfs from high-resolution near-IR spectra recorded with SPIRou in the framework of the SPIRou Legacy Survey (SLS). Our analysis relies on fitting synthetic spectra computed from marcs model atmospheres to selected spectral lines, both sensitive and insensitive to magnetic fields. We introduce a new code, ZeeTurbo, obtained by including the Zeeman effect and polarized radiative transfer capabilities to Turbospectrum. We compute a grid of synthetic spectra with ZeeTurbo for different magnetic field strengths and develop a process to simultaneously constrain Teff, log g, $\rm {[M/H]}$, $\rm {[\alpha /Fe]}$, and the average surface magnetic flux. In this paper, we present our approach and assess its performance using simulations, before applying it to six targets observed in the context of the SLS, namely AU Mic, EV Lac, AD Leo, CN Leo, PM J18482+0741, and DS Leo. Our method allows us to retrieve atmospheric parameters in good agreement with the literature, and simultaneously yields surface magnetic fluxes in the range 2–4 kG with a typical precision of 0.05 kG, in agreement with literature estimates, and consistent with the saturated dynamo regime in which most of these stars are.

Funder

European Research Council

Spanish Ministry of Science and Innovation

Spanish State Research Agency

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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