Precise Evolutionary Asteroseismology of High-Amplitude δ Scuti Star AE Ursae Majoris
arXiv:2208.09158 · doi:10.1088/1674-4527/ac8b5e
Abstract
Stellar structure and evolution theory is one of the basis in modern astronomy. Stellar inner structures and their evolutionary states can be precisely tested by asteroseismology, since the inner information is brought to the stellar surface by the global oscillating waves and becomes observable. For stellar evolutionary speed (i.e. how long time scale does a star stay at a special evolution phase?), because of the insurmountable gap between the time scales of the evolutionary history of human civilization and a star, it can only be roughly tested by ensemble of stars in different evolutionary stages in most cases, and all the snapshots of these stars make up our global view of stellar evolution. The effect of stellar evolution on the structure and the corresponding global size of a pulsating star will lead to tiny period variations of its pulsation modes, which are the most valuable indicators of its evolutionary state and can be used to test the stellar evolution theory by a single star rather than ensemble of stars. Here, we report a High-Amplitude Scuti star AE Ursae Majoris, who locates in the post main-sequence (MS) evolutionary stage and its observed linear period variation rate can be practically ascribed to its evolutionary effect. The result tests the stellar evolution theory from the pre-MS to post-MS with an unprecedented precision by a single star, and the framework can be extended to other type of pulsating stars to perform precise evolutionary asteroseismology, which aims to test the current stellar evolution theory in different evolutionary stages, discover the discrepancies between the theory and observations, and ultimately build a complete and precise stellar evolution theory to backtrack the history of each of these stars.
26 pages, 5 figures, 3 tables
References in corpus (10)
- Modules for Experiments in Stellar Astrophysics (MESA)
- The Transiting Exoplanet Survey Satellite
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Achieving better than 1 minute accuracy in the Heliocentric and Barycentric Julian Dates
- Angular momentum transport by heat-driven g-modes in slowly pulsating B stars
- The Contour Method: a new approach to finding modes of non-adiabatic stellar pulsations
- The pulsating white dwarf G117-B15A: still the most stable optical clock known
- Photometry of GSC 762-110, a new triple-mode radially pulsating star
- Asteroseismology of the double-radial mode Scuti star BP Pegasi
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- Asteroseismology of double-mode radial Scuti stars: AE Ursae Majoris and RV Arietis
- The oscillation properties of the Blue Large Amplitude Pulsators (BLAPs): relative change rate of periods, excitations, and period relations
- CY Aquarii: A Triple System with Twin Companions
- Period Variation Rates of Four Radial Single-Mode High-Amplitude Delta Scuti Stars
- BE Lyncis: A Pulsating Star in the Most Eccentric Binary with a Massive Unseen Companion