Stellar Pulsation and Evolution: a Combined Theoretical Renewal and Updated Models (SPECTRUM) -- I: Updating radiative opacities for pulsation models of Classical Cepheid and RR-Lyrae
Giulia De Somma, Marcella Marconi, Santi Cassisi, Roberto Molinaro

TL;DR
This paper updates radiative opacities in pulsation models of Classical Cepheids and RR Lyrae stars, assessing the impact on their pulsation properties and distance scale calibrations, with minimal changes observed.
Contribution
It presents the first update of the hydrodynamical pulsation code with modern opacity tables, ensuring a more consistent stellar modeling framework.
Findings
Instability strip boundaries shift by no more than 100K in temperature.
Pulsation periods vary within 1 sigma of previous models.
Light curve shapes and amplitudes show slight differences.
Abstract
Pulsating stars are universally recognized as precise distance indicators and tracers of stellar populations. Their variability, combined with well-defined relationships between pulsation properties and intrinsic evolutionary parameters such as luminosity, mass, and age, makes them essential for understanding galactic evolution and retrieving star formation histories. Therefore, accurate modeling of pulsating stars is crucial for using them as standard candles and stellar population tracers. This is the first paper in the "Stellar Pulsation and Evolution: a Combined Theoretical Renewal and Updated Models" (SPECTRUM) project, which aims to present an update of Stellingwerf's hydrodynamical pulsation code, by adopting the latest radiative opacity tables commonly used in stellar evolution community. We assess the impact of this update on pulsation properties, such as periods, instability…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astro and Planetary Science
