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abstract

Asteroseismology is the study of the interior physics and structure of stars using their pulsations. It is applicable to stars across the Hertzsprung-Russell (HR) diagram and a powerful technique to measure masses, radii and ages, but also directly constrain interior rotation, chemical mixing, and magnetism. This is because a star's self-excited pulsation modes are sensitive to its structure. Asteroseismology generally requires long-duration and high-precision time series data. The method of forward asteroseismic modelling, which is the statistical comparison of observed pulsation mode frequencies to theoretically predicted pulsation frequencies calculated from a grid of models, provides precise constraints for calibrating various transport phenomena. In this introduction to asteroseismology, we provide an overview of its principles, and the typical data sets and methodologies used to constrain stellar interiors. Finally, we present key highlights of asteroseismic results from across the HR diagram, and conclude with ongoing challenges and future prospects for this ever-expanding field within stellar astrophysics.

fields

astro-ph.SR 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Selected Results on Variable Stars Observed by TESS

astro-ph.SR · 2025-09-08 · unverdicted · novelty 0.0

A curated review of TESS-era results across the major classes of variable stars, with illustrative light curves, but with no new observational or theoretical result.

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  • Selected Results on Variable Stars Observed by TESS astro-ph.SR · 2025-09-08 · unverdicted · none · ref 59 · internal anchor

    A curated review of TESS-era results across the major classes of variable stars, with illustrative light curves, but with no new observational or theoretical result.