Recovering Signals in CoRoT Mission (RSCoRoT): I. Short Period Variable Stars
arXiv:2508.21665 · doi:10.1051/0004-6361/202555838
Abstract
The CoRoT (Convection, Rotation, and planetary Transits) mission still holds a large trove of high-quality, underused light curves with excellent signal-to-noise and continuous coverage. This paper, the first in a series, identifies and classifies variable stars in CoRoT fields whose variability has not been analyzed in the main repositories. We combine simulations and real data to test a moving-average scheme that mitigates instrumental jumps and enhances the recovery of short-period signals (<1 day) in roughly 20-day time series. For classification, we adopt a supervised selection built on features extracted from folded light curves using the double period, and we construct template-based models that also act as a new classifier for well-sampled light curves. We report 9,272 variables, of which 6,249 are not listed in SIMBAD or VSX. Our preliminary classes include 309 Beta Cephei, 3,105 Delta Scuti, 599 Algol-type eclipsing binaries, 844 Beta Lyrae eclipsing binaries, 497 W Ursae Majoris eclipsing binaries, 1,443 Gamma Doradus, 63 RR Lyrae, and 32 T Tauri stars. The resulting catalog inserts CoRoT variables into widely used astronomical repositories. Comparing sources in the inner and outer Milky Way, we find significant differences in the occurrence of several classes, consistent with metallicity and age gradients. The ability to recover sub-day periods also points to automated strategies for detecting longer-period variability, which we will develop in subsequent papers of this series.
11 pages, 7 figures
References in corpus (21)
- The Gaia mission
- The Transiting Exoplanet Survey Satellite
- The generalised Lomb-Scargle periodogram. A new formalism for the floating-mean and Keplerian periodograms
- CoRoT reveals a magnetic activity cycle in a Sun-like star
- Automated supervised classification of variable stars I. Methodology
- Young [/Fe]-enhanced stars discovered by CoRoT and APOGEE: What is their origin?
- The GIRAFFE Inner Bulge Survey (GIBS) III. Metallicity distributions and kinematics of 26 Galactic bulge fields
- Unveiling the time evolution of chemical abundances across the Milky Way disk with APOGEE
- Gaia Data Release 3: Cross-match of Gaia sources with variable objects from the literature
- Stellar Abundance Maps of the Milky Way Disk
- New low mass ratio contact binaries in the Catalina Sky Survey
- Sub-stellar Companions of Intermediate-mass Stars with CoRoT: CoRoT-34b, CoRoT-35b, and CoRoT-36b
- Semi-empirical seismic relations of A-F stars from CoRoT and Kepler legacy data
- The VVV Infrared Variability Catalog (VIVA-I)
- The VVV survey: Long-period variable stars I. Photometric catalog of ten VVV/OGLE tiles
- Stellar classification of CoRoT targets
- CoRoT-TESS eclipsing binaries with light-travel-time effect
- Study of a Sample of Faint Be Stars in the Exofield of CoRoT. Part III. Global Spectroscopic Characterization and Astrophysical Parameters of the Central Stars
- High-cadence stellar variability studies of RR Lyrae stars with DECam: New multi-band templates
- New Insights into Time Series Analysis IV: Panchromatic and Flux Independent Period Finding Methods
- CoRoT: The First Space-Based Transit Survey to Explore the Close-in Planet Population