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◆ Astronomy and Astrophysics2025-10-14· Physics

Asteroseismic investigation of HD 140283: The Methuselah star

M. Lundkvist, J. R. Larsen, Yaguang Li, Mark Lykke Winther, T. R. Bedding, H. Kjeldsen, T. R. White, M. B. Nielsen, G. Buldgen, Christian Guillaume, Amalie Stokholm, D. Huber, J. L. Rørsted, Prasad Mani, F. Grundahl

原始摘要(英文原文)· Original abstract
Context. HD 140283 is a well-studied metal-poor subgiant and a Gaia benchmark star, often used for testing stellar models due to its proximity, brightness, and low metallicity ([Fe/H]= − 2.3 dex). Aims. Here we present the first asteroseismic analysis of HD 140283, providing improved constraints on its fundamental properties. Methods. The star was observed by TESS in 20-second cadence during Sector 51. We extracted a custom light curve and performed a frequency analysis, revealing a rich spectrum of solar-like oscillations including mixed modes. These were combined with parameters from the literature to provide constraints on our model inference performed with BASTA. Results. Using a dense grid of models, we find a mass of 0.75 ± 0.01 M ⊙ , a radius of 2.078 +0.012 −0.011 R ⊙ , and an age of 14.2 ± 0.4 Gyr, in agreement with the upper limit set by the age of the Universe within 1 σ . The observed frequency of maximum power, ( ν max ) obs = 611.3 ± 7.4 μHz, is significantly higher than predicted from standard scaling relations (( ν max ) mod = 537.2 +2.9 −1.8 μHz), extending known deviations into the metal-poor regime. Conclusions. To our knowledge, the oscillations in HD 140283 have the highest ν max of any metal-poor star to date, which will help to advance our understanding of oscillations in metal-poor stars in general. The results demonstrate the value of asteroseismology for precise age determination in old halo stars and taking custom abundances and opacities into account during the modelling is probably important for further improving models of such stars. In addition, a detailed characterisation of metal-poor stars, such as HD 140283, will also help advance our understanding of Population III stars and their impact on future stellar generations.
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