Probing the internal magnetism of stars using asymptotic magneto-asteroseismology

Mathis S, Bugnet LA, Prat V, Augustson K, Mathur S, Garcia RA. 2021. Probing the internal magnetism of stars using asymptotic magneto-asteroseismology. Astronomy & Astrophysics. 647, A122.


Journal Article | Published | English

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Author
Mathis, S.; Bugnet, Lisa AnnabelleISTA ; Prat, V.; Augustson, K.; Mathur, S.; Garcia, R. A.
Abstract
Context. Our knowledge of the dynamics of stars has undergone a revolution through the simultaneous large amount of high-quality photometric observations collected by space-based asteroseismology and ground-based high-precision spectropolarimetry. They allowed us to probe the internal rotation of stars and their surface magnetism in the whole Hertzsprung-Russell diagram. However, new methods should still be developed to probe the deep magnetic fields in these stars. Aims. Our goal is to provide seismic diagnoses that allow us to probe the internal magnetism of stars. Methods. We focused on asymptotic low-frequency gravity modes and high-frequency acoustic modes. Using a first-order perturbative theory, we derived magnetic splittings of their frequencies as explicit functions of stellar parameters. Results. As in the case of rotation, we show that asymptotic gravity and acoustic modes can allow us to probe the different components of the magnetic field in the cavities in which they propagate. This again demonstrates the high potential of using mixed-modes when this is possible.
Publishing Year
Date Published
2021-03-18
Journal Title
Astronomy & Astrophysics
Acknowledgement
The authors thank the referee and Pr. J. Christensen-Dalsgaard for their very constructive comments and remarks that allowed us to improve the article. St. M., L. B., V. P., and K. A. acknowledge support from the European Research Council through ERC grant SPIRE 647383. All the members from CEA acknowledge support from GOLF and PLATO CNES grants of the Astrophysics Division at CEA. S. Mathur acknowledges support by the Ramon y Cajal fellowship number RYC-2015-17697. We made great use of the megyr python package for interfacing MESA and GYRE codes.
Volume
647
Article Number
A122
ISSN
eISSN
IST-REx-ID

Cite this

Mathis S, Bugnet LA, Prat V, Augustson K, Mathur S, Garcia RA. Probing the internal magnetism of stars using asymptotic magneto-asteroseismology. Astronomy & Astrophysics. 2021;647. doi:10.1051/0004-6361/202039180
Mathis, S., Bugnet, L. A., Prat, V., Augustson, K., Mathur, S., & Garcia, R. A. (2021). Probing the internal magnetism of stars using asymptotic magneto-asteroseismology. Astronomy & Astrophysics. EDP Sciences. https://doi.org/10.1051/0004-6361/202039180
Mathis, S., Lisa Annabelle Bugnet, V. Prat, K. Augustson, S. Mathur, and R. A. Garcia. “Probing the Internal Magnetism of Stars Using Asymptotic Magneto-Asteroseismology.” Astronomy & Astrophysics. EDP Sciences, 2021. https://doi.org/10.1051/0004-6361/202039180.
S. Mathis, L. A. Bugnet, V. Prat, K. Augustson, S. Mathur, and R. A. Garcia, “Probing the internal magnetism of stars using asymptotic magneto-asteroseismology,” Astronomy & Astrophysics, vol. 647. EDP Sciences, 2021.
Mathis S, Bugnet LA, Prat V, Augustson K, Mathur S, Garcia RA. 2021. Probing the internal magnetism of stars using asymptotic magneto-asteroseismology. Astronomy & Astrophysics. 647, A122.
Mathis, S., et al. “Probing the Internal Magnetism of Stars Using Asymptotic Magneto-Asteroseismology.” Astronomy & Astrophysics, vol. 647, A122, EDP Sciences, 2021, doi:10.1051/0004-6361/202039180.
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