The age of the Methuselah star in light of stellar evolution models with tailored abundances

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Autori principali: Guillaume, C., Buldgen, G., Amarsi, A. M., Dupret, M. A., Lundkvist, M. S., Larsen, J. R., Scuflaire, R., Noels, A.
Natura: Preprint
Pubblicazione: 2024
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author Guillaume, C.
Buldgen, G.
Amarsi, A. M.
Dupret, M. A.
Lundkvist, M. S.
Larsen, J. R.
Scuflaire, R.
Noels, A.
author_facet Guillaume, C.
Buldgen, G.
Amarsi, A. M.
Dupret, M. A.
Lundkvist, M. S.
Larsen, J. R.
Scuflaire, R.
Noels, A.
contents Context. HD140283, or the Methuselah star, is a well-known reference object in stellar evolution. Its peculiar chemical composition, proximity and absence of reddening makes it an interesting case-study of Pop II stars. Thanks to recent observational efforts, we now have precise interferometric and spectroscopic constraints, as well as revised astrometric parallaxes from the Gaia mission. Aims. We aim at determining the age of HD140283 with these lastest constraints, as well as quantifying the impact of systematics from physical inaccuracies in the stellar evolution models. Methods. Using recent spectroscopic abundances from the literature, including 3D non-LTE values for C, O, and Fe, we compute opacity tables specific to HD140283. We then use them in grids of stellar evolution models coupled to a Markov Chain Monte Carlo tool to determine the age of HD140283. Results. With our tailored models we find an age of 12.3Gy. Using a solar-scaled mixture instead results in an age value of 14Gy, in tension with the age of the universe ($13.77\pm0.06$Gy). We also find that reducing the mixing length parameter from its solar calibrated value will lead to an even lower age, in agreement with other recent studies. However, we find no direct evidence to favour a lower mixing length parameter value from our modelling. Conclusions. Taking into account the specific elemental abundances is crucial for the modelling of HD140283, as it leads to significant differences in the inferred age. However, this effect is degenerate with a lowering of the mixing length parameter. In this respect, asteroseismic constraints might play a key role in accurately deriving the mass of HD140283, therefore strongly constraining its age.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12343
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The age of the Methuselah star in light of stellar evolution models with tailored abundances
Guillaume, C.
Buldgen, G.
Amarsi, A. M.
Dupret, M. A.
Lundkvist, M. S.
Larsen, J. R.
Scuflaire, R.
Noels, A.
Solar and Stellar Astrophysics
Astrophysics of Galaxies
Context. HD140283, or the Methuselah star, is a well-known reference object in stellar evolution. Its peculiar chemical composition, proximity and absence of reddening makes it an interesting case-study of Pop II stars. Thanks to recent observational efforts, we now have precise interferometric and spectroscopic constraints, as well as revised astrometric parallaxes from the Gaia mission. Aims. We aim at determining the age of HD140283 with these lastest constraints, as well as quantifying the impact of systematics from physical inaccuracies in the stellar evolution models. Methods. Using recent spectroscopic abundances from the literature, including 3D non-LTE values for C, O, and Fe, we compute opacity tables specific to HD140283. We then use them in grids of stellar evolution models coupled to a Markov Chain Monte Carlo tool to determine the age of HD140283. Results. With our tailored models we find an age of 12.3Gy. Using a solar-scaled mixture instead results in an age value of 14Gy, in tension with the age of the universe ($13.77\pm0.06$Gy). We also find that reducing the mixing length parameter from its solar calibrated value will lead to an even lower age, in agreement with other recent studies. However, we find no direct evidence to favour a lower mixing length parameter value from our modelling. Conclusions. Taking into account the specific elemental abundances is crucial for the modelling of HD140283, as it leads to significant differences in the inferred age. However, this effect is degenerate with a lowering of the mixing length parameter. In this respect, asteroseismic constraints might play a key role in accurately deriving the mass of HD140283, therefore strongly constraining its age.
title The age of the Methuselah star in light of stellar evolution models with tailored abundances
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2411.12343