A bird’s eye view of stellar evolution through populations of variable stars in Galactic open clusters

Both star clusters and variable stars are sensitive laboratories of stellar astrophysics and evolution: cluster member stars provide context for interpreting cluster populations, whereas variability reveals the nature of individual stellar systems. The European Space Agency’s Gaia mission has revolu...

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Bibliographic Details
Main Authors: Anderson, Richard I. (Author) , Hunt, Emily Lauren (Author)
Format: Article (Journal) Editorial
Language:English
Published: August 2025
In: Astronomy and astrophysics
Year: 2025, Volume: 700, Pages: 1-9
ISSN:1432-0746
DOI:10.1051/0004-6361/202555111
Online Access:Verlag, kostenfrei, Volltext: https://doi.org/10.1051/0004-6361/202555111
Verlag, kostenfrei, Volltext: https://www.aanda.org/articles/aa/abs/2025/08/aa55111-25/aa55111-25.html
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Author Notes:Richard I. Anderson and Emily L. Hunt
Description
Summary:Both star clusters and variable stars are sensitive laboratories of stellar astrophysics and evolution: cluster member stars provide context for interpreting cluster populations, whereas variability reveals the nature of individual stellar systems. The European Space Agency’s Gaia mission has revolutionized the census of star clusters in the Milky Way, while simultaneously providing an unprecedented homogeneous all-sky catalog of variable stars. Here, we leverage the third Gaia data release to obtain an empirical bird’s eye view of stellar evolution based on 34 760 variable stars residing in 1192 Galactic open clusters (OCs) containing 173 294 members (variable member fraction 20.0%). Using precise OC distances, dereddened magnitudes, and consistently determined ages, we a) pinpointed regions of pulsational instability across the color-absolute magnitude diagram (CaMD); b) traced the occurrence rate of variables as a function of age, and c) considered the evolution of rotation periods and photometric activity (gyrochronology). The occurrence of pulsating stars can serve as a model- and reddening-independent age estimator. Our results underline that jointly considering stellar variability and OC membership enables a plethora of further applications, such as age dating or dereddening OCs based on expected CaMD locations of variable stars. Upcoming Gaia data releases and the Vera C. Rubin Observatory will vastly increase the extent to which the details of variable stars in OCs can empirically unravel the astrophysics and evolution of stellar populations.
Item Description:Gesehen am 09.01.2026
Physical Description:Online Resource
ISSN:1432-0746
DOI:10.1051/0004-6361/202555111