Connections between the cycle-to-cycle light curve and O-C variations of the non-Blazhko RR Lyrae stars
arXiv:2503.19579 · doi:10.1051/0004-6361/202452817
Abstract
It has long been known that if the durations of the consecutive cycles of a pulsating star vary randomly, the O-C diagram could show quasi-periodic/irregular variations, even though the actual average period is constant. It is hypothesised that the period variation observed in many RR Lyrae stars, which are much faster and stronger than may be explained by an evolutionary origin, may in fact be caused by this cycle-to-cycle (C2C) variation effect. So far, quantitative studies have not really been performed, and space data have not been used at all. Our primary goal was to quantitatively analyse the OC diagrams of RR Lyrae stars obtained from space photometry and explained by quasi-periodic or irregular periodic variations to see if they can be explained by random fluctuations in pulsation cycle length without assuming real period variations. We fitted statistical models to the O-C diagrams and tested their validity and fit. The necessary analysis of the light curves was performed using standard Fourier methods. We found that the vast majority of the O-C curves can be satisfactorily explained by assuming timing noise and the C2C variation without a real mean period variation. We have shown that the strength of the C2C variation is strongly dependent on the pulsation period and metallicity. These correlations suggests that turbulent convection may be behind the C2C variation. The additional frequencies of some RR Lyrae stars and their variation over time play only a marginal role in O-Cs. We have found new arguments that the phase jump phenomenon in RRc stars is in fact a continuous change, moreover, it could also be caused by the C2C variation.
13 pages, 7 figures, 2 tables, accepted for publication in Astronomy & Astrophysics
References in corpus (24)
- Array Programming with NumPy
- Gaia Data Release 3: Summary of the content and survey properties
- The Transiting Exoplanet Survey Satellite
- The K2 Mission: Characterization and Early results
- The GALAH survey: effective temperature calibration from the InfraRed Flux Method in the Gaia system
- Kepler photometry of RRc stars: peculiar double-mode pulsations and period doubling
- Long time-scale behavior of the Blazhko effect from rectified Kepler data
- Photometric metallicity and distance estimates for 136,000 RR Lyrae stars from Gaia DR3
- Observations of Cepheids with the MOST satellite: Contrast between Pulsation Modes
- TESS observations of Cepheid stars: first light results
- When a Period Is Not a Full Stop: Light Curve Structure Reveals Fundamental Parameters of Cepheid and RR Lyrae Stars
- KIC 2831097 - A 2-year orbital-period RR Lyrae binary candidate
- Multidimensional realistic modelling of Cepheid-like variables-II: Analysis of a Cepheid model
- First observations of W Virginis stars with K2: detection of period doubling
- Calibration of the convective parameters in stellar pulsation hydrocodes
- Revisiting the Kepler non-Blazhko RR Lyrae sample: Cycle-to-cyle variations and additional modes
- Finest light curve details, physical parameters, and period fluctuations of CoRoT RR Lyrae stars
- Radial Stellar Pulsation and Three-Dimensional Convection. IV. Full Amplitude Three-Dimensional Solutions
- Automated Extended Aperture Photometry of K2 variable stars
- Frequency analysis of the first-overtone RR Lyrae stars based on the Extended Aperture Photometry from the K2 data
- Temperature dependent convective parameters for RRc 1D-models
- Time series analysis of bright TESS RRc stars: Additional modes, phase variations and more
- To Grow Old and Peculiar: A Survey of Anomalous Variable Stars in M80 and Age Determination using K2 and Gaia
- Two Different Weak Modulations in ab-type RR Lyrae Variable V838 Cyg, and Potential Influence of Metal Abundance on Blazhko Modulation